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Major Advance In Organic Solar Cells

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DOE’s new renewable energy Venture Capital unit ARPA-E has just funded an entirely new kind of liquid battery innovation from MIT professor Donald Sadoway, that works like an aluminum plant running in reverse; producing power instead of consuming it.


Under the ARPA-E program at the DOE, the Obama administration has provided record-setting funding for advanced breakthroughs in renewable energy technology – that could propel America to the front of the post-oil age economy.

Just 37 technologies were selected for their potential transformational impact in the world, out of 3,600 applicants. Of the 37 winners; Sadaway’s has received the most funding; with $7 million.

MIT professor Donald Sadoway has come up with a technology never attempted before that could lead to very large-scale commercialization. Renewable energy storage will be worth trillions to whichever nation that can make economical, so Sadoway’s research holds promise: it was limited to domestically available liquid metals that are both plentiful and cheap.

Sadoway’s idea came from the technology used by aluminum smelting plants able to sustain extremely high levels of electrical current for years at a time.

The basic principle is to place three layers of liquid inside a container: Two different metal alloys, and a layer of a salt. The energy is stored in the liquid metals that want to react with one another but can do so only by transferring ions — electrically charged atoms of one of the metals — across the electrolyte, which results in the flow of electric current out of the battery.

When the battery is being charged, some ions migrate through the insulating salt layer to collect at one of the terminals. Then, when the power is being drained from the battery, those ions migrate back through the salt and collect at the opposite terminal.

The whole device is kept at a high temperature, around 700 degrees Celsius, so that the layers remain molten. In the small devices being tested in the lab, maintaining this temperature requires an outside heater, but Sadoway says that in the full-scale version, the electrical current being pumped into, or out of, the battery will be sufficient to maintain that temperature without any outside heat source.

One day, we’ll remember these ARPA-E 37 innovations for fundamentally changing the way we use and produce energy.  By getting the funding out under The Recovery Act; the administration is able to bypass the usual foot-dragging in the Senate that has prevented action on climate and clean energy legislation that is needed to safeguard our future as a first world country.

ARPA-E’s venture capital funding is intended to attract real VC funding so renewable energy technology breakthroughs in university labs can make it through the “Valley of Death” to commercialization.

Let’s hope our own VCs see the promise soon enough. Certainly Lightspeed Venture Partners’ Andrew Chung in Silicon Valley sees grid-scale storage as an area set to explode in the next decade or so; but our VCs better move quickly.

Within a week of the $7 million announcement from our US DOE a French oil company counter-offered Sadoway $4 million. Storage is to renewable energy as the railroad was to the coal industry in the 19th century.

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DOE’s new renewable energy Venture Capital unit ARPA-E has just funded an entirely new kind of liquid battery innovation from MIT professor Donald Sadoway, that works like an aluminum plant running in reverse; producing power instead of consuming it.


Under the ARPA-E program at the DOE, the Obama administration has provided record-setting funding for advanced breakthroughs in renewable energy technology – that could propel America to the front of the post-oil age economy.

Just 37 technologies were selected for their potential transformational impact in the world, out of 3,600 applicants. Of the 37 winners; Sadaway’s has received the most funding; with $7 million.

MIT professor Donald Sadoway has come up with a technology never attempted before that could lead to very large-scale commercialization. Renewable energy storage will be worth trillions to whichever nation that can make economical, so Sadoway’s research holds promise: it was limited to domestically available liquid metals that are both plentiful and cheap.

Sadoway’s idea came from the technology used by aluminum smelting plants able to sustain extremely high levels of electrical current for years at a time.

The basic principle is to place three layers of liquid inside a container: Two different metal alloys, and a layer of a salt. The energy is stored in the liquid metals that want to react with one another but can do so only by transferring ions — electrically charged atoms of one of the metals — across the electrolyte, which results in the flow of electric current out of the battery.

When the battery is being charged, some ions migrate through the insulating salt layer to collect at one of the terminals. Then, when the power is being drained from the battery, those ions migrate back through the salt and collect at the opposite terminal.

The whole device is kept at a high temperature, around 700 degrees Celsius, so that the layers remain molten. In the small devices being tested in the lab, maintaining this temperature requires an outside heater, but Sadoway says that in the full-scale version, the electrical current being pumped into, or out of, the battery will be sufficient to maintain that temperature without any outside heat source.

One day, we’ll remember these ARPA-E 37 innovations for fundamentally changing the way we use and produce energy.  By getting the funding out under The Recovery Act; the administration is able to bypass the usual foot-dragging in the Senate that has prevented action on climate and clean energy legislation that is needed to safeguard our future as a first world country.

ARPA-E’s venture capital funding is intended to attract real VC funding so renewable energy technology breakthroughs in university labs can make it through the “Valley of Death” to commercialization.

Let’s hope our own VCs see the promise soon enough. Certainly Lightspeed Venture Partners’ Andrew Chung in Silicon Valley sees grid-scale storage as an area set to explode in the next decade or so; but our VCs better move quickly.

Within a week of the $7 million announcement from our US DOE a French oil company counter-offered Sadoway $4 million. Storage is to renewable energy as the railroad was to the coal industry in the 19th century.

Start uga_filter:

Scientists say they’ve made a breakthrough in their pursuit of computers that “think” like a living thing’s brain – an effort that tests the limits of technology.

Even the world’s most powerful supercomputers can’t replicate basic aspects of the human mind. The machines can’t imagine a wall painted a different colour, for instance, or picture a person’s face and connect that to an emotion.

If researchers can make computers operate more like a brain thinks – by reasoning and dealing with abstractions, among other things – they could unleash tremendous insights in such diverse fields as medicine and economics.

A computer with the power of a human brain is not yet near.

But this week researchers from IBM are reporting that they’ve simulated a cat’s cerebral cortex, the thinking part of the brain, using a massive supercomputer.

The computer has 147,456 processors (most modern PCs have just one or two processors) and 144 terabytes of main memory – 100,000 times as much as your computer has.

The scientists had previously simulated 40 per cent of a mouse’s brain in 2006, a rat’s full brain in 2007, and 1 per cent of a human’s cerebral cortex this year, using progressively bigger supercomputers.

The latest feat, being presented at a supercomputing conference in Portland, Oregon, doesn’t mean the computer thinks like a cat, or that it is the progenitor of a race of robo-cats.

The simulation, which runs 100 times slower than an actual cat’s brain, is more about watching how thoughts are formed in the brain and how the roughly one billion neurons and 10 trillion synapses in a cat’s brain work together.

The researchers created a program that told the supercomputer, which is in the Lawrence Livermore National Laboratory, to behave how a brain is believed to behave.

The computer was shown images of corporate logos, including IBM’s, and scientists watched as different parts of the simulated brain worked together to figure out what the image was.

Dharmendra Modha, manager of cognitive computing for IBM Research and senior author of the paper, called it a “truly unprecedented scale of simulation.”

Researchers at Stanford University and Lawrence Berkeley National Laboratory were also part of the project.

Modha says the research could lead to computers that rely less on “structured” data, such the input 2 plus 2 equals 4, and can handle ambiguity better, like identifying the corporate logo even if the image is blurry.

Or such computers could incorporate senses like sight, touch and hearing into the decisions they make.

One reason that development would be significant to IBM: The company is selling “smarter planet” services that use digital sensors to monitor things like weather and traffic and feed that data into computers that are asked to do something with the information, like predicting a tsunami or detecting freeway accidents.

Other companies could use “cognitive computing” to make better sense of large volumes of information.

Jim Olds, a neuroscientist and director of the Krasnow Institute for Advanced Study at George Mason University, called the new research a “tremendous step.”

Olds, who was not involved in IBM’s work, said neuroscientists have been amassing data about how the brain works much like “stamp collectors,” without a way to tie it together.

“We’ve made tremendous advances in collecting data, but we don’t have a collective theory yet for how this complex organ called the brain produces things like Shakespeare’s sonnets and Mozart’s symphonies,” he said.

“The holy grail for neuroscientists is to map activity from single nerve cells, which they know about, into how billions of nerve cells act in concert.”

Modha says a simulation of a human cortex could come within the next decade if Moore’s Law holds. That’s the rule of thumb that the number of transistors on a computer chip tends to double every two years.

Yet Olds cautioned that simulating the human brain is “such a complex problem that we may not be able to get to an answer, even with supercomputing.”

“There are no guarantees in this game because the sheer complexity of the problem really dwarfs anything we’ve tried to do,” he said.

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Scientists say they’ve made a breakthrough in their pursuit of computers that “think” like a living thing’s brain – an effort that tests the limits of technology.

Even the world’s most powerful supercomputers can’t replicate basic aspects of the human mind. The machines can’t imagine a wall painted a different colour, for instance, or picture a person’s face and connect that to an emotion.

If researchers can make computers operate more like a brain thinks – by reasoning and dealing with abstractions, among other things – they could unleash tremendous insights in such diverse fields as medicine and economics.

A computer with the power of a human brain is not yet near.

But this week researchers from IBM are reporting that they’ve simulated a cat’s cerebral cortex, the thinking part of the brain, using a massive supercomputer.

The computer has 147,456 processors (most modern PCs have just one or two processors) and 144 terabytes of main memory – 100,000 times as much as your computer has.

The scientists had previously simulated 40 per cent of a mouse’s brain in 2006, a rat’s full brain in 2007, and 1 per cent of a human’s cerebral cortex this year, using progressively bigger supercomputers.

The latest feat, being presented at a supercomputing conference in Portland, Oregon, doesn’t mean the computer thinks like a cat, or that it is the progenitor of a race of robo-cats.

The simulation, which runs 100 times slower than an actual cat’s brain, is more about watching how thoughts are formed in the brain and how the roughly one billion neurons and 10 trillion synapses in a cat’s brain work together.

The researchers created a program that told the supercomputer, which is in the Lawrence Livermore National Laboratory, to behave how a brain is believed to behave.

The computer was shown images of corporate logos, including IBM’s, and scientists watched as different parts of the simulated brain worked together to figure out what the image was.

Dharmendra Modha, manager of cognitive computing for IBM Research and senior author of the paper, called it a “truly unprecedented scale of simulation.”

Researchers at Stanford University and Lawrence Berkeley National Laboratory were also part of the project.

Modha says the research could lead to computers that rely less on “structured” data, such the input 2 plus 2 equals 4, and can handle ambiguity better, like identifying the corporate logo even if the image is blurry.

Or such computers could incorporate senses like sight, touch and hearing into the decisions they make.

One reason that development would be significant to IBM: The company is selling “smarter planet” services that use digital sensors to monitor things like weather and traffic and feed that data into computers that are asked to do something with the information, like predicting a tsunami or detecting freeway accidents.

Other companies could use “cognitive computing” to make better sense of large volumes of information.

Jim Olds, a neuroscientist and director of the Krasnow Institute for Advanced Study at George Mason University, called the new research a “tremendous step.”

Olds, who was not involved in IBM’s work, said neuroscientists have been amassing data about how the brain works much like “stamp collectors,” without a way to tie it together.

“We’ve made tremendous advances in collecting data, but we don’t have a collective theory yet for how this complex organ called the brain produces things like Shakespeare’s sonnets and Mozart’s symphonies,” he said.

“The holy grail for neuroscientists is to map activity from single nerve cells, which they know about, into how billions of nerve cells act in concert.”

Modha says a simulation of a human cortex could come within the next decade if Moore’s Law holds. That’s the rule of thumb that the number of transistors on a computer chip tends to double every two years.

Yet Olds cautioned that simulating the human brain is “such a complex problem that we may not be able to get to an answer, even with supercomputing.”

“There are no guarantees in this game because the sheer complexity of the problem really dwarfs anything we’ve tried to do,” he said.

Start uga_filter:

Professor Guillermo Bazan and a team of postgraduate researchers at UC Santa Barbara’s Center for Polymers and Organic Solids (CPOS)  have announced a major advance in the synthesis of organic polymers for plastic solar cells.

Postdoctoral student Greg Welch removing a sample from the microwave reactor. (Credit: Image courtesy of Tony Rairden / College of Engineering, University of California - Santa Barbara)

Postdoctoral student Greg Welch removing a sample from the microwave reactor. (Credit: Image courtesy of Tony Rairden / College of Engineering, University of California - Santa Barbara)

Bazan’s team reduced reaction time by 99%, from 48 hours to 30 minutes, and increased average molecular weight of the polymers by a factor of more than 3.

The reduced reaction time effectively cuts production time for the organic polymers by nearly 50%, since reaction time and purification time are approximately equal in the production process, in both laboratory and commercial environments.

The higher molecular weight of the polymers, reflecting the creation of longer chains of the polymers, has a major benefit in increasing current density in plastic solar cells by as much as a factor of more than four. Over polymer batches with varying average molecular weights, produced using varying combinations of the elements of the new methodology, the increase in current density was found to be approximately proportional to the increase in average molecular weight.

The methodology, detailed in a recent Nature Chemistry paper, “will greatly accelerate research in this area,” stated Bazan, “by making possible the rapid production of different batches of polymers for evaluation.” He further noted, “We plan to take advantage of this approach both to generate new materials that will increase solar cell efficiencies and operational lifetimes, and to reevaluate previously-considered polymer structures that should exhibit much higher performance than they showed initially.”

To make these gains, the team:

Mike McGehee, Director of Stanford’s Center for Advanced Molecular Photovoltaics, hailed Bazan’s work, commenting, “Many synthetic chemists around the world are making copolymers with alternating donor and acceptors to attain low bandgaps. Most of them are having trouble attaining adequate molecular weight, so this new synthetic method that creates longer polymer chains is a real breakthrough. The reduction in synthesis time should also make it easier to optimize the chemical structure as the research moves forward and will ultimately reduce the manufacturing cost.”

Bazan is a Professor of Chemistry and of Materials at UC Santa Barbara, and is co-director of CPOS and a faculty member at the NSF-funded Materials Research Laboratory.

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Professor Guillermo Bazan and a team of postgraduate researchers at UC Santa Barbara’s Center for Polymers and Organic Solids (CPOS)  have announced a major advance in the synthesis of organic polymers for plastic solar cells.

Postdoctoral student Greg Welch removing a sample from the microwave reactor. (Credit: Image courtesy of Tony Rairden / College of Engineering, University of California - Santa Barbara)

Postdoctoral student Greg Welch removing a sample from the microwave reactor. (Credit: Image courtesy of Tony Rairden / College of Engineering, University of California - Santa Barbara)

Bazan’s team reduced reaction time by 99%, from 48 hours to 30 minutes, and increased average molecular weight of the polymers by a factor of more than 3.

The reduced reaction time effectively cuts production time for the organic polymers by nearly 50%, since reaction time and purification time are approximately equal in the production process, in both laboratory and commercial environments.

The higher molecular weight of the polymers, reflecting the creation of longer chains of the polymers, has a major benefit in increasing current density in plastic solar cells by as much as a factor of more than four. Over polymer batches with varying average molecular weights, produced using varying combinations of the elements of the new methodology, the increase in current density was found to be approximately proportional to the increase in average molecular weight.

The methodology, detailed in a recent Nature Chemistry paper, “will greatly accelerate research in this area,” stated Bazan, “by making possible the rapid production of different batches of polymers for evaluation.” He further noted, “We plan to take advantage of this approach both to generate new materials that will increase solar cell efficiencies and operational lifetimes, and to reevaluate previously-considered polymer structures that should exhibit much higher performance than they showed initially.”

To make these gains, the team:

  • replaced conventional thermal heating with microwave heating,
  • modified reactant concentrations, and
  • varied the ratio of reactants by only 5% from the nominal 1:1 stoichiometric ratio normally employed in polymerization reactions.

Mike McGehee, Director of Stanford’s Center for Advanced Molecular Photovoltaics, hailed Bazan’s work, commenting, “Many synthetic chemists around the world are making copolymers with alternating donor and acceptors to attain low bandgaps. Most of them are having trouble attaining adequate molecular weight, so this new synthetic method that creates longer polymer chains is a real breakthrough. The reduction in synthesis time should also make it easier to optimize the chemical structure as the research moves forward and will ultimately reduce the manufacturing cost.”

Bazan is a Professor of Chemistry and of Materials at UC Santa Barbara, and is co-director of CPOS and a faculty member at the NSF-funded Materials Research Laboratory.

Start uga_filter:

Call it the Obama effect or a last minute face saving tactic but the Obama Administration made it clear that it is willing to include national mitigation measures announced by the advanced developing countries in the international climate treaty to be discussed at Copenhagen next month.


In a joint statement the US and Chinese officials announced that the new climate treaty should be based on ‘common but differentiated responsibility’. This is the first time that the United States has agreed for different climate goals for developed and developing countries.

[B]oth sides believe that, while striving for final legal agreement, an agreed outcome at Copenhagen should, based on the principle of common but differentiated responsibilities and respective capabilities, include emission reduction targets of developed countries and nationally appropriate mitigation actions of developing countries.

During the Bangkok round of negotiations the US and EU negotiators raised objections to the principles agreed upon in the Kyoto Protocol and Bali Climate Convention which said that there will be clear distinction between the mitigation measures of developing and developed countries. It was surprising to see US, EU raise objections to the Bali agreement as it was unanimous. But the move could be explained as a diversion tactic by the US as it was under pressure to give solid numbers regarding emission reductions.

The Obama Administration officials have made it clear that a final climate treaty can only be reached in 2010. The possibility of an official agreement was already bleak given the US Congress’ failure to approve the climate change bill which includes emission reduction targets along with carbon trading mechanisms. Commitments from the US are crucial for the climate treaty as it failed to ratify the Kyoto Protocol.

President Obama said that the new climate treaty must be an effective one which could produce quick and positive results. Although the chances of a final deal at Copenhagen are bleak it’s good to see that the developed and developing countries working to reach on an agreement on the principles of the climate treaty.

Former chief economist of the World Bank Nicolas Stern proposed a logical approach to distribute the responsibilities among developed and developing countries. According to the proposal, developed countries would take up mandatory emission targets probably in line with the IPCC recommendations (25-40 percent reduction by 2020) while the developing countries would reduce their carbon emissions through various mitigation measures which will be set up according to their own discretion.

China has announced 15% renewable energy target for 2020 and improving energy efficiency and energy intensity. China can announce sectoral emission targets during the Copenhagen meet. India’s Parliament will be debating an energy efficiency bill the month which will set stringent usage limits on various industries. Brazil has announced 40 percent emission reduction target by 2020, half of which will be achieved through forest conservation. South Korea has announced 30 percent emission reduction plan by 2020. South Africa and Indonesia are also planning to take up national emission reduction targets.

The issue now is accountability and monitoring. An efficient mechanism for reporting the progress and results of the mitigation measures must be a part of the climate treaty. The developed and developing countries must also agree on the issue of technology transfer and financing. The financing issue is closely integrated with the mitigation measures of developing countries as a major portion of these emission reduction will be financed by either direct aid or through carbon offset mechanisms.

These initiatives are more than welcome as they would not only push the developed countries to take up even more ambitious targets but would mean that the after the commitment period of the proposed climate treaty the developing countries will be be in an even better position to reduce their carbon emissions.

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www.kwch.com/Global/story.asp?S=11497778&utm_source=twitterfeed&utm_medium=twitter Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: www.kwch.com/Global/story.asp?S=11497778&utm_source=twitterfeed&utm_medium=twitter Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: www.kwch.com/Global/story.asp?S=11497778&utm_source=twitterfeed&utm_medium=twitter Ending uga_track_full_url: /outgoing/www.kwch.com/Global/story.asp?S=11497778&utm_source=twitterfeed&utm_medium=twitter Adding onclick attribute for /outgoing/www.kwch.com/Global/story.asp?S=11497778&utm_source=twitterfeed&utm_medium=twitter Ending uga_preg_callback: climate treaty Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Start uga_is_url_internal: www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Ending uga_track_full_url: /outgoing/www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Adding onclick attribute for /outgoing/www.livemint.com/2009/11/13204132/There-is-an-opportunity-now-th.html Ending uga_preg_callback: distribute the responsibilities among developed and developing countries Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Start uga_is_url_internal: www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Ending uga_track_full_url: /outgoing/www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Adding onclick attribute for /outgoing/www.celsias.com/article/china-15-renewable-energy-target-ups-ante-us/ Ending uga_preg_callback: 15% renewable energy target Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Start uga_is_url_internal: redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Ending uga_track_full_url: /outgoing/redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Adding onclick attribute for /outgoing/redgreenandblue.org/2009/11/08/india-to-launch-trading-of-energy-efficient-certificates-for-energy-intensive-industries/ Ending uga_preg_callback: energy efficiency bill Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Start uga_is_url_internal: in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Ending uga_track_full_url: /outgoing/in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Adding onclick attribute for /outgoing/in.news.yahoo.com/43/20091114/890/twl-brazil-aims-to-reduce-co2-emissions.html Ending uga_preg_callback: 40 percent emission reduction Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: en.cop15.dk/news/view+news?newsid=2617 Start uga_is_url_internal: en.cop15.dk/news/view+news?newsid=2617 Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: en.cop15.dk/news/view+news?newsid=2617 Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: en.cop15.dk/news/view+news?newsid=2617 Ending uga_track_full_url: /outgoing/en.cop15.dk/news/view+news?newsid=2617 Adding onclick attribute for /outgoing/en.cop15.dk/news/view+news?newsid=2617 Ending uga_preg_callback: South Korea Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Start uga_is_url_internal: www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Ending uga_track_full_url: /outgoing/www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Adding onclick attribute for /outgoing/www.treehugger.com/files/2008/08/south-africa-capping-carbon-emissions.php Ending uga_preg_callback: South Africa Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Start uga_is_url_internal: www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: internal_domains (www.humacon.org,humacon.org) Checking hostname www.humacon.org Checking hostname humacon.org Ending uga_is_url_internal: Get tracker for external URL Start uga_track_external_url: www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Start uga_get_option: track_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Ending uga_track_full_url: /outgoing/www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Adding onclick attribute for /outgoing/www.voanews.com/english/archive/2009-09/2009-09-03-voa36.cfm Ending uga_preg_callback: Indonesia Ending uga_filter:

Call it the Obama effect or a last minute face saving tactic but the Obama Administration made it clear that it is willing to include national mitigation measures announced by the advanced developing countries in the international climate treaty to be discussed at Copenhagen next month.


In a joint statement the US and Chinese officials announced that the new climate treaty should be based on ‘common but differentiated responsibility’. This is the first time that the United States has agreed for different climate goals for developed and developing countries.

[B]oth sides believe that, while striving for final legal agreement, an agreed outcome at Copenhagen should, based on the principle of common but differentiated responsibilities and respective capabilities, include emission reduction targets of developed countries and nationally appropriate mitigation actions of developing countries.

During the Bangkok round of negotiations the US and EU negotiators raised objections to the principles agreed upon in the Kyoto Protocol and Bali Climate Convention which said that there will be clear distinction between the mitigation measures of developing and developed countries. It was surprising to see US, EU raise objections to the Bali agreement as it was unanimous. But the move could be explained as a diversion tactic by the US as it was under pressure to give solid numbers regarding emission reductions.

The Obama Administration officials have made it clear that a final climate treaty can only be reached in 2010. The possibility of an official agreement was already bleak given the US Congress’ failure to approve the climate change bill which includes emission reduction targets along with carbon trading mechanisms. Commitments from the US are crucial for the climate treaty as it failed to ratify the Kyoto Protocol.

President Obama said that the new climate treaty must be an effective one which could produce quick and positive results. Although the chances of a final deal at Copenhagen are bleak it’s good to see that the developed and developing countries working to reach on an agreement on the principles of the climate treaty.

Former chief economist of the World Bank Nicolas Stern proposed a logical approach to distribute the responsibilities among developed and developing countries. According to the proposal, developed countries would take up mandatory emission targets probably in line with the IPCC recommendations (25-40 percent reduction by 2020) while the developing countries would reduce their carbon emissions through various mitigation measures which will be set up according to their own discretion.

China has announced 15% renewable energy target for 2020 and improving energy efficiency and energy intensity. China can announce sectoral emission targets during the Copenhagen meet. India’s Parliament will be debating an energy efficiency bill the month which will set stringent usage limits on various industries. Brazil has announced 40 percent emission reduction target by 2020, half of which will be achieved through forest conservation. South Korea has announced 30 percent emission reduction plan by 2020. South Africa and Indonesia are also planning to take up national emission reduction targets.

The issue now is accountability and monitoring. An efficient mechanism for reporting the progress and results of the mitigation measures must be a part of the climate treaty. The developed and developing countries must also agree on the issue of technology transfer and financing. The financing issue is closely integrated with the mitigation measures of developing countries as a major portion of these emission reduction will be financed by either direct aid or through carbon offset mechanisms.

These initiatives are more than welcome as they would not only push the developed countries to take up even more ambitious targets but would mean that the after the commitment period of the proposed climate treaty the developing countries will be be in an even better position to reduce their carbon emissions.

Start uga_filter:

Move over CO2—you’ve been ousted, along with methane, as the biggest offenders of global climate change. According to a new a study by Purdue University and NASA, the major chemicals most frequently cited as leading to climate change, namely carbon dioxide and methane, are actually outclassed in their warming potential by compounds receiving less attention. The majority of “greenhouse gases” are created by humans.

The results were discovered when researchers studied more than a dozen chemicals, or greenhouse gases as classified by their warming properties defined by the Intergovernmental Panel on Climate Change. From there, the team developed a blueprint for the underlying molecular machinery of global warming. The results appeared in the November 12, 2009 issue of the American Chemical Society’s Journal of Physical Chemistry, just in time for the convergence of world leaders in Copenhagen.

Maybe more amazing than the fact that we now have a global warming blueprint is that no one else has ever before mapped climate change; yet the U.S. is in the midst of passing global climate change policy. The original hope was to have legislation in place prior to Copenhagen but in the spirit of American politics, Republicans and Democrats can’t agree on one policy—the Republicans are supporting the Waxman-Markey Bill and the Democrats are pushing the Kerry-Boxer Bill.

The Purdue/NASA study combined results from experimental observations along with computer modeling. The goal of the project was to determine which chemical and physical properties are most detrimental in causing global warming.

It turns out that the compounds, which contain fluorine atoms, are far more efficient at blocking radiation in the “atmospheric window,” according to Purdue chemistry and earth and atmospheric sciences professor Joseph Francisco, a study co-author. NASA scientist Timothy Lee was lead author of the study with Francisco and NASA postdoctoral fellow Partha Bera.

Francisco explains that the atmospheric window is the frequency in the infrared region through which radiation from Earth is released into space, helping to cool the planet. When the heat is trapped rather than released, a “greenhouse effect” occurs, and the planet becomes warmer. The majority of the chemicals that cause heat to be trapped are used by industries worldwide.

Based on the ability to trap radiation in the atmospheric window, chemicals such as sulfur and nitrogen flourides, perfluorocarbons (PFCs), hydrofluorocarbons (HFCs), and chlorofluorocarbons (CFCs) stand out. Chemicals like CO2, while harmful, don’t close the atmospheric window as quickly as these other compounds making them more dangerous.

“It’s actually rather stark,” said Francisco, “but an understanding of how the chemicals contribute to climate change on a molecular scale affords the opportunity to create benign alternatives and to test new chemicals for their global warming capability before they go to market.”

“Now you have a rational design basis,” he said.

Not sure what some of these are? Stop using aerosol cans. CFC use has decreased with the discovery that they lead to the destruction of the ozone layer. However, HFCs and PFCs are widely used in air conditioning and in the manufacturing of carpets, appliances and electronics.

The study notes that, “Although current concentrations of some of these trace gases have been found to be substantially small compared to carbon dioxide, their concentration is on the rise. With the current rate of increase, they will be important contributors in the future, according to some models.”

So CO2 and methane are not in fact the worst chemicals, but fluorine-containing compounds are actually the worst. In addition, according to Lee, “The compounds also persist longer than carbon dioxide and other major global warming agents. The concern is that, even if emitted into the atmosphere in lower quantities, the chemicals might have a powerful cumulative effect over time. Some of these chemicals don’t break down for thousands of years.”

Well I sure hope that the auto industry is working in tandem with technology companies to replace these chemicals because I’d really like to keep my air conditioning… and car stereo… and TV…

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gas2.org/2009/06/29/three-ways-the-climate-bill-will-change-your-life/ Ending uga_track_full_url: /outgoing/gas2.org/2009/06/29/three-ways-the-climate-bill-will-change-your-life/ Adding onclick attribute for /outgoing/gas2.org/2009/06/29/three-ways-the-climate-bill-will-change-your-life/ Ending uga_preg_callback: global climate change Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: gas2.org/2009/06/29/biomethane-for-energy-and-fuel/2/ Start uga_is_url_internal: gas2.org/2009/06/29/biomethane-for-energy-and-fuel/2/ Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 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'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: track_ext_links (1) Tracking external links enabled Start uga_get_option: prefix_ext_links uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: prefix_ext_links (/outgoing/) Ending uga_track_external_url: gas2.org/2009/06/29/biomethane-for-energy-and-fuel/2/ Ending uga_track_full_url: /outgoing/gas2.org/2009/06/29/biomethane-for-energy-and-fuel/2/ Adding onclick attribute for /outgoing/gas2.org/2009/06/29/biomethane-for-energy-and-fuel/2/ Ending uga_preg_callback: methane Start uga_preg_callback: Array Get tracker for full url Start uga_track_full_url: gas2.org/2009/02/01/global-warming-our-immediate-responsibility/ Start uga_is_url_internal: gas2.org/2009/02/01/global-warming-our-immediate-responsibility/ Start uga_get_option: internal_domains uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => 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Move over CO2—you’ve been ousted, along with methane, as the biggest offenders of global climate change. According to a new a study by Purdue University and NASA, the major chemicals most frequently cited as leading to climate change, namely carbon dioxide and methane, are actually outclassed in their warming potential by compounds receiving less attention. The majority of “greenhouse gases” are created by humans.

The results were discovered when researchers studied more than a dozen chemicals, or greenhouse gases as classified by their warming properties defined by the Intergovernmental Panel on Climate Change. From there, the team developed a blueprint for the underlying molecular machinery of global warming. The results appeared in the November 12, 2009 issue of the American Chemical Society’s Journal of Physical Chemistry, just in time for the convergence of world leaders in Copenhagen.

Maybe more amazing than the fact that we now have a global warming blueprint is that no one else has ever before mapped climate change; yet the U.S. is in the midst of passing global climate change policy. The original hope was to have legislation in place prior to Copenhagen but in the spirit of American politics, Republicans and Democrats can’t agree on one policy—the Republicans are supporting the Waxman-Markey Bill and the Democrats are pushing the Kerry-Boxer Bill.

The Purdue/NASA study combined results from experimental observations along with computer modeling. The goal of the project was to determine which chemical and physical properties are most detrimental in causing global warming.

It turns out that the compounds, which contain fluorine atoms, are far more efficient at blocking radiation in the “atmospheric window,” according to Purdue chemistry and earth and atmospheric sciences professor Joseph Francisco, a study co-author. NASA scientist Timothy Lee was lead author of the study with Francisco and NASA postdoctoral fellow Partha Bera.

Francisco explains that the atmospheric window is the frequency in the infrared region through which radiation from Earth is released into space, helping to cool the planet. When the heat is trapped rather than released, a “greenhouse effect” occurs, and the planet becomes warmer. The majority of the chemicals that cause heat to be trapped are used by industries worldwide.

Based on the ability to trap radiation in the atmospheric window, chemicals such as sulfur and nitrogen flourides, perfluorocarbons (PFCs), hydrofluorocarbons (HFCs), and chlorofluorocarbons (CFCs) stand out. Chemicals like CO2, while harmful, don’t close the atmospheric window as quickly as these other compounds making them more dangerous.

“It’s actually rather stark,” said Francisco, “but an understanding of how the chemicals contribute to climate change on a molecular scale affords the opportunity to create benign alternatives and to test new chemicals for their global warming capability before they go to market.”

“Now you have a rational design basis,” he said.

Not sure what some of these are? Stop using aerosol cans. CFC use has decreased with the discovery that they lead to the destruction of the ozone layer. However, HFCs and PFCs are widely used in air conditioning and in the manufacturing of carpets, appliances and electronics.

The study notes that, “Although current concentrations of some of these trace gases have been found to be substantially small compared to carbon dioxide, their concentration is on the rise. With the current rate of increase, they will be important contributors in the future, according to some models.”

So CO2 and methane are not in fact the worst chemicals, but fluorine-containing compounds are actually the worst. In addition, according to Lee, “The compounds also persist longer than carbon dioxide and other major global warming agents. The concern is that, even if emitted into the atmosphere in lower quantities, the chemicals might have a powerful cumulative effect over time. Some of these chemicals don’t break down for thousands of years.”

Well I sure hope that the auto industry is working in tandem with technology companies to replace these chemicals because I’d really like to keep my air conditioning… and car stereo… and TV…

Start uga_filter:

The ocean is a potentially vast source of electric power, yet as engineers test new technologies for capturing it, the devices are plagued by battering storms, limited efficiency, and the need to be tethered to the seafloor.

Shown is the view from the far downstream end into the test section of the U.S. Air Force Academy water tunnel. Three blades of the cycloidal turbine are visible at the far end. Engineer Stefan Siegel and his colleagues test the turbine using the tunnel, with both steady and oscillating flow conditions simulating a shallow-water wave-flow field. (Credit: SSgt Danny Washburn, U.S. Air Force Academy, Department of Aeronautics)

Shown is the view from the far downstream end into the test section of the U.S. Air Force Academy water tunnel. Three blades of the cycloidal turbine are visible at the far end. Engineer Stefan Siegel and his colleagues test the turbine using the tunnel, with both steady and oscillating flow conditions simulating a shallow-water wave-flow field. (Credit: SSgt Danny Washburn, U.S. Air Force Academy, Department of Aeronautics)

Now, a team of aerospace engineers is applying the principles that keep airplanes aloft to create a new wave-energy system that is durable, extremely efficient, and can be placed anywhere in the ocean, regardless of depth.

While still in early design stages, computer and scale-model tests of the system suggest higher efficiencies than wind turbines. The system is designed to effectively cancel incoming waves, capturing their energy while flattening them out, providing an added application as a storm-wave breaker.

The researchers, from the U.S. Air Force Academy, will present their design at the 62nd annual meeting of the American Physical Society’s Division of Fluid Dynamics on Nov. 24, 2009, in Minneapolis, Minn.

“Our group was working on very basic research on feedback flow control for years,” says lead researcher Stefan Siegel, referring to efforts to use sensors and adjustable parts to control how fluids flow around airfoils like wings. “For an airplane, when you control that flow, you better control flight–for example, enabling you to land a plane on a shorter runway.”

A colleague had read an article on wave energy in a magazine and mentioned it to Siegel and the other team members, and they realized they could operate a wave energy device using the same feedback control concepts they had been developing.

Supported by a grant from the National Science Foundation, the researchers developed a system that uses lift instead of drag to cause the propeller blades to move.

“Every airplane flies with lift, not with drag,” says Siegel. “Compare an old style windmill with a modern one. The new style uses lift and is what made wind energy viable–and it doesn’t get shredded in a storm like an old windmill. Fluid dynamics fixed the issue for windmills, and can do the same for wave energy.”

Windmills have active controls that turn the blades to compensate for storm winds, eliminating lift when it is a risk, and preventing damage.

The Air Force Academy researchers used the same approach with a hydrofoil (equivalent to an airfoil, but for water) and built it into a cycloidal propeller, a design that emerged in the 1930s and currently propels tugboats, ferries and other highly maneuverable ships.

The researchers changed the propeller orientation from horizontal to vertical, allowing direct interaction with the cyclic, up and down motion of wave energy. The researchers also developed individual control systems for each propeller blade, allowing sophisticated manipulations that maximize (or minimize, in the case of storms) interaction with wave energy.

Ultimately, the goal is to keep the flow direction and blade direction constant, cancelling the incoming wave and using standard gear-driven or direct-drive generators to convert the wave energy into electric energy. A propeller that is exactly out of phase with a wave will cancel that wave and maximize energy output.

The cancellation will also allow the float-mounted devices to function without the need of mooring, important for deep-sea locations that hold tremendous wave energy potential and are currently out of reach for many existing wave energy designs.

While the final device may be as large as 40 meters across, laboratory models are currently less than a meter in diameter. A larger version of the system will be tested next year at NSF’s Network for Earthquake Engineering Simulation (NEES) tsunami wave basin at Oregon State University, an important experiment for proving the efficacy of the design.

The conference takes place from Nov. 22-24, 2009, at the Minneapolis Convention Center. The conference is the year’s largest devoted to fluid dynamics, bringing together researchers from across the world and across a wide range of disciplines.

The talk, “Deep Ocean Wave Cancellation Using a Cycloidal Turbine” is by Stefan Siegel, Tiger Jeans, and Thomas McLaughlin of the U.S. Air Force Academy.

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The ocean is a potentially vast source of electric power, yet as engineers test new technologies for capturing it, the devices are plagued by battering storms, limited efficiency, and the need to be tethered to the seafloor.

Shown is the view from the far downstream end into the test section of the U.S. Air Force Academy water tunnel. Three blades of the cycloidal turbine are visible at the far end. Engineer Stefan Siegel and his colleagues test the turbine using the tunnel, with both steady and oscillating flow conditions simulating a shallow-water wave-flow field. (Credit: SSgt Danny Washburn, U.S. Air Force Academy, Department of Aeronautics)

Shown is the view from the far downstream end into the test section of the U.S. Air Force Academy water tunnel. Three blades of the cycloidal turbine are visible at the far end. Engineer Stefan Siegel and his colleagues test the turbine using the tunnel, with both steady and oscillating flow conditions simulating a shallow-water wave-flow field. (Credit: SSgt Danny Washburn, U.S. Air Force Academy, Department of Aeronautics)

Now, a team of aerospace engineers is applying the principles that keep airplanes aloft to create a new wave-energy system that is durable, extremely efficient, and can be placed anywhere in the ocean, regardless of depth.

While still in early design stages, computer and scale-model tests of the system suggest higher efficiencies than wind turbines. The system is designed to effectively cancel incoming waves, capturing their energy while flattening them out, providing an added application as a storm-wave breaker.

The researchers, from the U.S. Air Force Academy, will present their design at the 62nd annual meeting of the American Physical Society’s Division of Fluid Dynamics on Nov. 24, 2009, in Minneapolis, Minn.

“Our group was working on very basic research on feedback flow control for years,” says lead researcher Stefan Siegel, referring to efforts to use sensors and adjustable parts to control how fluids flow around airfoils like wings. “For an airplane, when you control that flow, you better control flight–for example, enabling you to land a plane on a shorter runway.”

A colleague had read an article on wave energy in a magazine and mentioned it to Siegel and the other team members, and they realized they could operate a wave energy device using the same feedback control concepts they had been developing.

Supported by a grant from the National Science Foundation, the researchers developed a system that uses lift instead of drag to cause the propeller blades to move.

“Every airplane flies with lift, not with drag,” says Siegel. “Compare an old style windmill with a modern one. The new style uses lift and is what made wind energy viable–and it doesn’t get shredded in a storm like an old windmill. Fluid dynamics fixed the issue for windmills, and can do the same for wave energy.”

Windmills have active controls that turn the blades to compensate for storm winds, eliminating lift when it is a risk, and preventing damage.

The Air Force Academy researchers used the same approach with a hydrofoil (equivalent to an airfoil, but for water) and built it into a cycloidal propeller, a design that emerged in the 1930s and currently propels tugboats, ferries and other highly maneuverable ships.

The researchers changed the propeller orientation from horizontal to vertical, allowing direct interaction with the cyclic, up and down motion of wave energy. The researchers also developed individual control systems for each propeller blade, allowing sophisticated manipulations that maximize (or minimize, in the case of storms) interaction with wave energy.

Ultimately, the goal is to keep the flow direction and blade direction constant, cancelling the incoming wave and using standard gear-driven or direct-drive generators to convert the wave energy into electric energy. A propeller that is exactly out of phase with a wave will cancel that wave and maximize energy output.

The cancellation will also allow the float-mounted devices to function without the need of mooring, important for deep-sea locations that hold tremendous wave energy potential and are currently out of reach for many existing wave energy designs.

While the final device may be as large as 40 meters across, laboratory models are currently less than a meter in diameter. A larger version of the system will be tested next year at NSF’s Network for Earthquake Engineering Simulation (NEES) tsunami wave basin at Oregon State University, an important experiment for proving the efficacy of the design.

The conference takes place from Nov. 22-24, 2009, at the Minneapolis Convention Center. The conference is the year’s largest devoted to fluid dynamics, bringing together researchers from across the world and across a wide range of disciplines.

The talk, “Deep Ocean Wave Cancellation Using a Cycloidal Turbine” is by Stefan Siegel, Tiger Jeans, and Thomas McLaughlin of the U.S. Air Force Academy.

Start uga_filter:

Search engine use is not just part of our daily routines; it is also becoming part of our learning process, according to Penn State researchers.


The researchers sought to discover the cognitive processes underlying searching. They examined the search habits of 72 participants while conducting a total of 426 searching tasks. They found that search engines are primarily used for fact checking users’ own internal knowledge, meaning that they are part of the learning process rather than simply a source for information. They also found that people’s learning styles can affect how they use search engines.

“Our results suggest the view of Web searchers having simple information needs may be incorrect,” said Jim Jansen, associate professor of information sciences and technology. “Instead, we discovered that users applied simple searching expressions to support their higher-level information needs.”

Jansen said the results of this study provide useful information about how search engine use has evolved over the past decade and clues about how to design better search engines to address users’ learning needs in the future. He and Brian Smith, associate professor information sciences and technology and Danielle Booth, former Penn State student, published their findings in the November issue of Information Processing and Management.

“If we can incorporate cognitive, affective and situational aspects of a person, there is the potential to really move search performance forward,” Jansen said. “At its core, we are getting to the motivational elements of search.”

National Science Foundation and the Air Force Office of Scientific Research funded this research.

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Search engine use is not just part of our daily routines; it is also becoming part of our learning process, according to Penn State researchers.


The researchers sought to discover the cognitive processes underlying searching. They examined the search habits of 72 participants while conducting a total of 426 searching tasks. They found that search engines are primarily used for fact checking users’ own internal knowledge, meaning that they are part of the learning process rather than simply a source for information. They also found that people’s learning styles can affect how they use search engines.

“Our results suggest the view of Web searchers having simple information needs may be incorrect,” said Jim Jansen, associate professor of information sciences and technology. “Instead, we discovered that users applied simple searching expressions to support their higher-level information needs.”

Jansen said the results of this study provide useful information about how search engine use has evolved over the past decade and clues about how to design better search engines to address users’ learning needs in the future. He and Brian Smith, associate professor information sciences and technology and Danielle Booth, former Penn State student, published their findings in the November issue of Information Processing and Management.

“If we can incorporate cognitive, affective and situational aspects of a person, there is the potential to really move search performance forward,” Jansen said. “At its core, we are getting to the motivational elements of search.”

National Science Foundation and the Air Force Office of Scientific Research funded this research.

Start uga_filter:

Researchers from Stony Brook University Medical Center in New York have confirmed that Homo floresiensis is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. Using statistical analysis on skeletal remains of a well-preserved female specimen, researchers determined the “hobbit” to be a distinct species and not a genetically flawed version of modern humans.

New statistical analysis confirms that the recently discovered human-like hobbit -- Homo floresiensis -- is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. (Credit: Image courtesy of Wiley-Blackwell)
New statistical analysis confirms that the recently discovered human-like “hobbit” — Homo floresiensis — is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. (Credit: Image courtesy of Wiley-Blackwell)

Details of the study appear in the December issue of Significance, the magazine of the Royal Statistical Society, published by Wiley-Blackwell.

In 2003 Australian and Indonesian scientists discovered small-bodied, small-brained, hominin (human-like) fossils on the remote island of Flores in the Indonesian archipelago. This discovery of a new human species called Homo floresiensis has spawned much debate with some researchers claiming that the small creatures are really modern humans whose tiny head and brain are the result of a medical condition called microcephaly.

Researchers William Jungers, Ph.D., and Karen Baab, Ph.D. studied the skeletal remains of a female (LB1), nicknamed “Little Lady of Flores” or “Flo” to confirm the evolutionary path of the hobbit species. The specimen was remarkably complete and included skull, jaw, arms, legs, hands, and feet that provided researchers with integrated information from an individual fossil.

The cranial capacity of LB1 was just over 400 cm, making it more similar to the brains of a chimpanzee or bipedal “ape-men” of East and South Africa. The skull and jawbone features are much more primitive looking than any normal modern human. Statistical analysis of skull shapes show modern humans cluster together in one group, microcephalic humans in another and the hobbit along with ancient hominins in a third.

Due to the relative completeness of fossil remains for LB1, the scientists were able to reconstruct a reliable body design that was unlike any modern human. The thigh bone and shin bone of LB1 are much shorter than modern humans including Central African pygmies, South African KhoeSan (formerly known as ‘bushmen”) and “negrito” pygmies from the Andaman Islands and the Philippines. Some researchers speculate this could represent an evolutionary reversal correlated with “island dwarfing.” “It is difficult to believe an evolutionary change would lead to less economical movement,” said Dr. Jungers. “It makes little sense that this species re-evolved shorter thighs and legs because long hind limbs improve bipedal walking. We suspect that these are primitive retentions instead.”

Further analysis of the remains using a regression equation developed by Dr. Jungers indicates that LB1 was approximately 106 cm tall (3 feet, 6 inches) — far smaller than the modern pygmies whose adults grow to less than 150 cm (4 feet, 11 inches). A scatterplot depicts LB1 far outside the range of Southeast Asian and African pygmies in both absolute height and body mass indices. “Attempts to dismiss the hobbits as pathological people have failed repeatedly because the medical diagnoses of dwarfing syndromes and microcephaly bear no resemblance to the unique anatomy of Homo floresiensis,” noted Dr. Baab.


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Researchers from Stony Brook University Medical Center in New York have confirmed that Homo floresiensis is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. Using statistical analysis on skeletal remains of a well-preserved female specimen, researchers determined the “hobbit” to be a distinct species and not a genetically flawed version of modern humans.

New statistical analysis confirms that the recently discovered human-like hobbit -- Homo floresiensis -- is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. (Credit: Image courtesy of Wiley-Blackwell)
New statistical analysis confirms that the recently discovered human-like “hobbit” — Homo floresiensis — is a genuine ancient human species and not a descendant of healthy humans dwarfed by disease. (Credit: Image courtesy of Wiley-Blackwell)

Details of the study appear in the December issue of Significance, the magazine of the Royal Statistical Society, published by Wiley-Blackwell.

In 2003 Australian and Indonesian scientists discovered small-bodied, small-brained, hominin (human-like) fossils on the remote island of Flores in the Indonesian archipelago. This discovery of a new human species called Homo floresiensis has spawned much debate with some researchers claiming that the small creatures are really modern humans whose tiny head and brain are the result of a medical condition called microcephaly.

Researchers William Jungers, Ph.D., and Karen Baab, Ph.D. studied the skeletal remains of a female (LB1), nicknamed “Little Lady of Flores” or “Flo” to confirm the evolutionary path of the hobbit species. The specimen was remarkably complete and included skull, jaw, arms, legs, hands, and feet that provided researchers with integrated information from an individual fossil.

The cranial capacity of LB1 was just over 400 cm, making it more similar to the brains of a chimpanzee or bipedal “ape-men” of East and South Africa. The skull and jawbone features are much more primitive looking than any normal modern human. Statistical analysis of skull shapes show modern humans cluster together in one group, microcephalic humans in another and the hobbit along with ancient hominins in a third.

Due to the relative completeness of fossil remains for LB1, the scientists were able to reconstruct a reliable body design that was unlike any modern human. The thigh bone and shin bone of LB1 are much shorter than modern humans including Central African pygmies, South African KhoeSan (formerly known as ‘bushmen”) and “negrito” pygmies from the Andaman Islands and the Philippines. Some researchers speculate this could represent an evolutionary reversal correlated with “island dwarfing.” “It is difficult to believe an evolutionary change would lead to less economical movement,” said Dr. Jungers. “It makes little sense that this species re-evolved shorter thighs and legs because long hind limbs improve bipedal walking. We suspect that these are primitive retentions instead.”

Further analysis of the remains using a regression equation developed by Dr. Jungers indicates that LB1 was approximately 106 cm tall (3 feet, 6 inches) — far smaller than the modern pygmies whose adults grow to less than 150 cm (4 feet, 11 inches). A scatterplot depicts LB1 far outside the range of Southeast Asian and African pygmies in both absolute height and body mass indices. “Attempts to dismiss the hobbits as pathological people have failed repeatedly because the medical diagnoses of dwarfing syndromes and microcephaly bear no resemblance to the unique anatomy of Homo floresiensis,” noted Dr. Baab.


Start uga_filter:

The oceans play a key role in regulating climate, absorbing more than a quarter of the carbon dioxide that humans put into the air. Now, the first year-by-year accounting of this mechanism during the industrial era suggests the oceans are struggling to keep up with rising emissions — a finding with potentially wide implications for future climate. The study appears in the November 19 issue of the journalNature.

The researchers estimate that the oceans last year took up a record 2.3 billion tons of CO2 produced from burning of fossil fuels. But with overall emissions growing rapidly, the proportion of fossil-fuel emissions absorbed by the oceans since 2000 may have declined by as much as 10%.

Some climate models have already predicted such a slowdown in the oceans’ ability to soak up excess carbon from the atmosphere, but this is the first time scientists have actually measured it. Models attribute the change to depletion of ozone in the stratosphere and global warming-induced shifts in winds and ocean circulation. But the new study suggests the slowdown is due to natural chemical and physical limits on the oceans’ ability to absorb carbon — an idea that is now the subject of widespread research by other scientists.

“The more carbon dioxide you put in, the more acidic the ocean becomes, reducing its ability to hold CO2” said the study’s lead author, Samar Khatiwala, an oceanographer at Columbia University’s Lamont-Doherty Earth Observatory. “Because of this chemical effect, over time, the ocean is expected to become a less efficient sink of manmade carbon. The surprise is that we may already be seeing evidence for this, perhaps compounded by the ocean’s slow circulation in the face of accelerating emissions.”

The study reconstructs the accumulation of industrial carbon in the oceans year by year, from 1765 to 2008. Khatiwala and his colleagues found that uptake rose sharply in the 1950s, as the oceans tried to keep pace with the growth of carbon dioxide emissions worldwide. Emissions continued to grow, and by 2000, reached such a pitch that the oceans have since absorbed a declining overall percentage, even though they absorb more each year in absolute tonnage. Today, the oceans hold about 150 billion tons of industrial carbon, the researchers estimate–a third more than in the mid-1990s.

For decades, scientists have tried to estimate the amount of manmade carbon absorbed by the ocean by teasing out the small amount of industrial carbon — less than 1 percent — from the enormous background levels of natural carbon. Because of the difficulties of this approach, only one attempt has been made to come up with a global estimate of how much industrial carbon the oceans held — for a single year, 1994.

Khatiwala and his colleagues came up with another method. Using some of the same data as their predecessors — seawater temperatures, salinity, manmade chlorofluorocarbons and other measures — they developed a mathematical technique to work backward from the measurements to infer the concentration of industrial carbon in surface waters, and its transport to deep water through ocean circulation. This allowed them to reconstruct the uptake and distribution of industrial carbon in the oceans over time.

Their estimate of industrial carbon in the oceans in 1994 — 114 billion tons — nearly matched the earlier 118 billion-ton estimate, made by Chris Sabine, a marine chemist at the National Oceanic and Atmospheric Organization in a 2004 paper in the journal Science.

Sabine, who was not involved in the new study, said he saw some limitations. For one, he said, the study assumes circulation has remained steady, along with the amount of organic matter in the oceans. “That being said, I still think this is the best estimate of the time variance of anthropogenic CO2 in the ocean available,” said Sabine. “Our previous attempts to quantify anthropogenic CO2 using ocean data have only been able to provide single snapshots in time.”

About 40 percent of the carbon entered the oceans through the frigid waters of the Southern Ocean, around Antarctica, because carbon dioxide dissolves more readily in cold, dense seawater than in warmer waters. From there, currents transport the carbon north. “We’ve suspected for some time that the Southern Ocean plays a critical role in soaking up fossil fuel CO2,” said Khatiwala. “But our study is the first to quantify the importance of this region with actual data.”

The researchers also estimated carbon uptake on land, by taking the known amount of fossil-fuel emissions and subtracting the oceans’ uptake and the carbon left in the air. They were surprised to learn that the land may now be absorbing more than it is giving off.

They say that until the 1940s, the landscape produced excess carbon dioxide, possibly due to logging and the clearing and burning of forests for farming. Deforestation and other land-use changes continue at a rapid pace today — but now, each year the land appears to be absorbing 1.1 billion tons more carbon than it is giving off.

One possible reason for the reversal, say the researchers, is that now, some of the extra atmospheric carbon — raw material for photosynthesis–may be feeding back into living plants and making them grow faster. “The extra carbon dioxide in the atmosphere may be providing a fertilizing effect,” said study coauthor Timothy Hall, a senior scientist at NASA’s Goddard Institute for Space Studies. Many other scientists are now working to determine the possible effects of increased carbon dioxide on plant growth, and incorporate these into models of past and future climates.

Khatiwala says there are still large uncertainties, but in any case, natural mechanisms cannot be depended upon to mitigate increasing human-produced emissions. “What our ocean study and other recent land studies suggest is that we cannot count on these sinks operating in the future as they have in the past, and keep on subsidizing our ever-growing appetite for fossil fuels,” he said.

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The oceans play a key role in regulating climate, absorbing more than a quarter of the carbon dioxide that humans put into the air. Now, the first year-by-year accounting of this mechanism during the industrial era suggests the oceans are struggling to keep up with rising emissions — a finding with potentially wide implications for future climate. The study appears in the November 19 issue of the journalNature.

The researchers estimate that the oceans last year took up a record 2.3 billion tons of CO2 produced from burning of fossil fuels. But with overall emissions growing rapidly, the proportion of fossil-fuel emissions absorbed by the oceans since 2000 may have declined by as much as 10%.

Some climate models have already predicted such a slowdown in the oceans’ ability to soak up excess carbon from the atmosphere, but this is the first time scientists have actually measured it. Models attribute the change to depletion of ozone in the stratosphere and global warming-induced shifts in winds and ocean circulation. But the new study suggests the slowdown is due to natural chemical and physical limits on the oceans’ ability to absorb carbon — an idea that is now the subject of widespread research by other scientists.

“The more carbon dioxide you put in, the more acidic the ocean becomes, reducing its ability to hold CO2” said the study’s lead author, Samar Khatiwala, an oceanographer at Columbia University’s Lamont-Doherty Earth Observatory. “Because of this chemical effect, over time, the ocean is expected to become a less efficient sink of manmade carbon. The surprise is that we may already be seeing evidence for this, perhaps compounded by the ocean’s slow circulation in the face of accelerating emissions.”

The study reconstructs the accumulation of industrial carbon in the oceans year by year, from 1765 to 2008. Khatiwala and his colleagues found that uptake rose sharply in the 1950s, as the oceans tried to keep pace with the growth of carbon dioxide emissions worldwide. Emissions continued to grow, and by 2000, reached such a pitch that the oceans have since absorbed a declining overall percentage, even though they absorb more each year in absolute tonnage. Today, the oceans hold about 150 billion tons of industrial carbon, the researchers estimate–a third more than in the mid-1990s.

For decades, scientists have tried to estimate the amount of manmade carbon absorbed by the ocean by teasing out the small amount of industrial carbon — less than 1 percent — from the enormous background levels of natural carbon. Because of the difficulties of this approach, only one attempt has been made to come up with a global estimate of how much industrial carbon the oceans held — for a single year, 1994.

Khatiwala and his colleagues came up with another method. Using some of the same data as their predecessors — seawater temperatures, salinity, manmade chlorofluorocarbons and other measures — they developed a mathematical technique to work backward from the measurements to infer the concentration of industrial carbon in surface waters, and its transport to deep water through ocean circulation. This allowed them to reconstruct the uptake and distribution of industrial carbon in the oceans over time.

Their estimate of industrial carbon in the oceans in 1994 — 114 billion tons — nearly matched the earlier 118 billion-ton estimate, made by Chris Sabine, a marine chemist at the National Oceanic and Atmospheric Organization in a 2004 paper in the journal Science.

Sabine, who was not involved in the new study, said he saw some limitations. For one, he said, the study assumes circulation has remained steady, along with the amount of organic matter in the oceans. “That being said, I still think this is the best estimate of the time variance of anthropogenic CO2 in the ocean available,” said Sabine. “Our previous attempts to quantify anthropogenic CO2 using ocean data have only been able to provide single snapshots in time.”

About 40 percent of the carbon entered the oceans through the frigid waters of the Southern Ocean, around Antarctica, because carbon dioxide dissolves more readily in cold, dense seawater than in warmer waters. From there, currents transport the carbon north. “We’ve suspected for some time that the Southern Ocean plays a critical role in soaking up fossil fuel CO2,” said Khatiwala. “But our study is the first to quantify the importance of this region with actual data.”

The researchers also estimated carbon uptake on land, by taking the known amount of fossil-fuel emissions and subtracting the oceans’ uptake and the carbon left in the air. They were surprised to learn that the land may now be absorbing more than it is giving off.

They say that until the 1940s, the landscape produced excess carbon dioxide, possibly due to logging and the clearing and burning of forests for farming. Deforestation and other land-use changes continue at a rapid pace today — but now, each year the land appears to be absorbing 1.1 billion tons more carbon than it is giving off.

One possible reason for the reversal, say the researchers, is that now, some of the extra atmospheric carbon — raw material for photosynthesis–may be feeding back into living plants and making them grow faster. “The extra carbon dioxide in the atmosphere may be providing a fertilizing effect,” said study coauthor Timothy Hall, a senior scientist at NASA’s Goddard Institute for Space Studies. Many other scientists are now working to determine the possible effects of increased carbon dioxide on plant growth, and incorporate these into models of past and future climates.

Khatiwala says there are still large uncertainties, but in any case, natural mechanisms cannot be depended upon to mitigate increasing human-produced emissions. “What our ocean study and other recent land studies suggest is that we cannot count on these sinks operating in the future as they have in the past, and keep on subsidizing our ever-growing appetite for fossil fuels,” he said.

Start uga_filter:

Viruses are well known for attacking humans and animals, but some viruses instead attack bacteria. Texas A&M University researchers are exploring how hungry viruses, armed with transformer-like weapons, attack bacteria, which may aid in the treatment of bacterial infections.

The Texas A&M researchers’ work is published in the journal Nature Structural & Molecular Biology.

The attackers are called phages, or bacteriophages, meaning eaters of bacteria.

The word bacteriophage is derived from the Greek “phagein,” meaning eater of bacteria.

“The phages first attach to the bacteria and then inject their DNA,” says Sun Qingan, coauthor of the article and a doctoral student at Texas A&M. “Then they reproduce inside the cell cytoplasm.”

After more than 100 phage particles have been assembled, the next step is to be released from the bacterial host, so that the progeny virions can find other hosts and repeat the reproduction cycle, Sun adds.

Besides the cell membrane, the phages have another obstacle on their way out — a hard shell called cell wall that protects the bacteria. Only by destroying the cell wall can the phages release their offspring.

But, don’t worry. The phages have a secret weapon — an enzyme that can destroy the wall from inside, thus called endolysin.

“One of the special examples, R21, remains inactive when it is first synthesized and attached to the membrane as demonstrated in our paper,” Sun explains. “But when the enzyme leaves the membrane, it restructures just like a transformer and gains the power to destroy the cell wall.”

The trigger controlling the transformation process is a segment of the enzyme call the SAR domain, according to the Texas A&M team.

“The SAR domain is like the commander — it tells the enzyme when to begin restructuring and destroying the cell wall,” he says. “This finding enables us to better understand the release process and provides us with a possible target when we want to control the destruction of bacteria cell walls or prohibit this action in some infectious diseases.”

Some research has been conducted to explore the possibility of using phages to kill bacteria and thus treating bacterial infections.

Sun and colleagues’ finding unveils one secret of the phages and may be useful in phage therapy and other applications.

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Viruses are well known for attacking humans and animals, but some viruses instead attack bacteria. Texas A&M University researchers are exploring how hungry viruses, armed with transformer-like weapons, attack bacteria, which may aid in the treatment of bacterial infections.

The Texas A&M researchers’ work is published in the journal Nature Structural & Molecular Biology.

The attackers are called phages, or bacteriophages, meaning eaters of bacteria.

The word bacteriophage is derived from the Greek “phagein,” meaning eater of bacteria.

“The phages first attach to the bacteria and then inject their DNA,” says Sun Qingan, coauthor of the article and a doctoral student at Texas A&M. “Then they reproduce inside the cell cytoplasm.”

After more than 100 phage particles have been assembled, the next step is to be released from the bacterial host, so that the progeny virions can find other hosts and repeat the reproduction cycle, Sun adds.

Besides the cell membrane, the phages have another obstacle on their way out — a hard shell called cell wall that protects the bacteria. Only by destroying the cell wall can the phages release their offspring.

But, don’t worry. The phages have a secret weapon — an enzyme that can destroy the wall from inside, thus called endolysin.

“One of the special examples, R21, remains inactive when it is first synthesized and attached to the membrane as demonstrated in our paper,” Sun explains. “But when the enzyme leaves the membrane, it restructures just like a transformer and gains the power to destroy the cell wall.”

The trigger controlling the transformation process is a segment of the enzyme call the SAR domain, according to the Texas A&M team.

“The SAR domain is like the commander — it tells the enzyme when to begin restructuring and destroying the cell wall,” he says. “This finding enables us to better understand the release process and provides us with a possible target when we want to control the destruction of bacteria cell walls or prohibit this action in some infectious diseases.”

Some research has been conducted to explore the possibility of using phages to kill bacteria and thus treating bacterial infections.

Sun and colleagues’ finding unveils one secret of the phages and may be useful in phage therapy and other applications.

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'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: account_id (UA-10399907-2) Ending uga_get_tracker: Start uga_insert_html_once: footer, Footer hooked: HTML inserted: Location is FOOTER Inserting HTML End uga_insert_html Ending uga_wp_footer_track: Start uga_shutdown Start uga_in_feed Ending uga_in_feed: Start uga_track_user Start uga_get_option: ignore_users uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: ignore_users (1) Start uga_get_option: max_user_level uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: max_user_level (8) Tracking user with level Ending uga_track_user: 1 Footer hook was executed Start uga_get_option: footer_hooked uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: footer_hooked (1) Start uga_get_option: debug uga_options: array ( 'internal_domains' => 'www.humacon.org,humacon.org', 'account_id' => 'UA-10399907-2', 'enable_tracker' => true, 'track_adm_pages' => false, 'ignore_users' => true, 'max_user_level' => '8', 'footer_hooked' => true, 'filter_content' => true, 'filter_comments' => true, 'filter_comment_authors' => true, 'track_ext_links' => true, 'prefix_ext_links' => '/outgoing/', 'track_files' => true, 'prefix_file_links' => '/downloads/', 'track_extensions' => 'gif,jpg,jpeg,bmp,png,pdf,mp3,wav,phps,zip,gz,tar,rar,jar,exe,pps,ppt,xls,doc', 'track_mail_links' => true, 'prefix_mail_links' => '/mailto/', 'debug' => true, 'check_updates' => true, 'version_sent' => '1.6.0', 'advanced_config' => true, ) Ending uga_get_option: debug (1) -->