Water Refineries?
<<   August/2008   >>
Sun Mon Tue Wed Thu Fri Sat
          1 2
3 4 5 6 7 8 9
10 11 12 13 14 15 16
17 18 19 20 21 22 23
24 25 26 27 28 29 30
31  

Arts
Movies
Humor
Television
Music

Business
Internet
Finance
Jobs
Investing
Economy

Computers
Software
Hardware
World
Mobile

Games
Video Games
RPGs

Health
Fitness
Medicine
Alternative

Home
Consumers
Cooking

Recreation
Travel
Food
Outdoors

Reference
Psychology
Science
Education

Regional
US
Canada
Europe

Science
NSF
Space
Technology

Society
People
Religion

Sports
Baseball
Soccer
Basketball
 
18/Aug/2008 9:15AM
Water Refineries?

Using a surprisingly simple, inexpensive technique, chemists have found a way to pull pure oxygen from water using relatively small amounts of electricity, common chemicals and a room-temperature glass of water.

Because oxygen and hydrogen are energy-rich fuels, many researchers have proposed using solar electricity to split water into those elements--a stored energy source for when the sun goes down. One of the chief obstacles to that green-energy scenario has been the difficulty of producing oxygen without large amounts of energy or a high-maintenance environment.

Now, Massachusetts Institute of Technology chemist Daniel Nocera and his postdoctoral student Matthew Kanan have discovered an efficient way to solve the oxygen problem. They announced their findings July 31, 2008, online in the journal Science.

"The discovery has enormous implications for the large scale deployment of solar since it puts us on the doorstep of a cheap and easily manufactured storage mechanism," said Nocera. "The ease of implementation means that this discovery will have legs. I have great faith in my chemistry, materials science and engineering colleagues in the community to drive this discovery hard and hopefully their work, along with our continued studies will yield viable technologies within 10 years."

While a home-based energy source using this technique could be a decade away, the breakthrough is a major step forward.

"This study demonstrates how research is critical for driving American competitiveness in the global energy marketplace. By funding fundamental research in water and renewable energy, we are investing in both our economic and environmental futures," said Arden L. Bement, Jr., director of the National Science Foundation (NSF).

To produce oxygen, Nocera and Kanan added cobalt and phosphates to neutral water and then inserted a conductive-glass electrode. As soon as the researchers applied a current, a dark film began to form on the electrode from which tiny pockets of oxygen began to appear, eventually building into a stream of bubbles.

After analyzing the electrode, the researchers concluded that a cobalt-phosphate mixture, possibly combined with phosphate, had deposited as a film.

Nocera and Kanan believe the film is the catalyst that helps break apart the water molecules to create oxygen gas. The protons (hydrogen nuclei) released from the process pick up electrons and convert back into hydrogen at a partner electrode.

Nocera and Kanan also found evidence that the catalyst seems to refresh itself, a mechanism that would make maintenance of such oxygen-extracting systems far simpler than alternatives, although that finding needs confirmation from additional experiments.

"The simplicity of this process is amazing," said Luis Echegoyen, director of NSF's Chemistry Division. "Using common and affordable elements, and a glass of water, these chemists may have given us a future way to efficiently obtain oxygen by splitting water."

Despite the straightforward experimental setup, the exact mechanism driving the reactions is still unknown. For direct conversion of solar energy into hydrogen and oxygen, researchers will need to study the new research results and incorporate the mechanisms into a larger system that also cleanly produces hydrogen.

Nocera is a member of NSF's Powering the Planet, a partnership that NSF forged between MIT, Caltech and several other institutions as an NSF Chemical Bonding Center in 2005. In his role as a co-investigator with the center, Nocera has been pursuing sustainable energy technology through a broader effort to learn from, and apply, the lessons of photosynthesis and other natural processes.

"When we support fundamental research we never know where that investment will lead. In this instance, it may lead to new opportunities for sustainable energy," said Tony Chan, assistant director for NSF's Mathematics and Physical Sciences Directorate.

-NSF-




Recent news in category
Small Satellite Takes on Large Thunderstorms
Planetary "First Family" Discovered by Astronomers using Gemini and Keck Observatories
The "Hole" Story

Global recent news
King Louis XVI
Police arrest terror suspects in Toronto area
Assn. for Fire Ecology Regional Conference 2008 in Tucson Jan 28th-31st

18/Aug/2008 9:15AM
The summer games in Beijing may have just gotten underway, but the United States can already claim gold medal bragging rights. The sixth International Linguistics Olympiad ended today in Slanchev Bryag, Bulgaria, and U.S. high school students captured 11 out of 33 awards, including gold medals in individual and team events. This was only the second time the U.S. has ever competed in the event. Their achievement brings a new focus on computational linguistics. This year's Olympiad ... More at http://www.nsf.gov/news/news_summ.jsp?cntn_id=112073&govDel=USNSF_51 This is an NSF News item.

18/Aug/2008 9:15AM
The first scientific mission with Sentry, a newly developed robot capable of diving as deep as 5,000 meters (3.1 miles) into the ocean, has been successfully completed by scientists and engineers from the Woods Hole Oceanographic Institution (WHOI) and the University of Washington (UW).The vehicle surveyed and helped pinpoint several proposed deep-water sites for seafloor instruments that will be deployed in the National Science Foundation (NSF)'s planned Ocean Observatories ... More at http://www.nsf.gov/news/news_summ.jsp?cntn_id=112037&govDel=USNSF_51 This is an NSF News item.

18/Aug/2008 9:15AM
As the Summer Olympics in Beijing kicks off this week, the event is giving scientists a once-in-a-lifetime opportunity to observe how the atmosphere responds when a heavily populated region substantially curbs everyday industrial emissions.The National Science Foundation (NSF)-funded "Cheju ABC Plume-Monsoon Experiment" (CAPMEX) will include a series of flights by specially equipped unmanned aircraft known as autonomous unmanned aerial vehicles (AUAVs). The aerial ... More at http://www.nsf.gov/news/news_summ.jsp?cntn_id=112022&govDel=USNSF_51 This is an NSF News item.

18/Aug/2008 9:15AM
We don't have spacecraft to take us outside our solar system--not yet, at least. Still, astronomers thought they had a pretty good understanding of how our solar system formed and in turn, how others formed. In the last dozen years, nearly 300 exoplanets have been discovered. Are the solar systems in which they reside indeed like our own? Without knowledge or observations to the contrary, conventional knowledge said yes. Three Northwestern University researchers questioned that assumption ... More at http://www.nsf.gov/news/news_summ.jsp?cntn_id=112024&govDel=USNSF_51 This is an NSF News item.

18/Aug/2008 9:15AM
Instead of using a flat microchip as the light sensor for their new camera, a team of engineers has developed a sensor that is a flexible mesh of wire-connected pixels. The mesh is made from many of the same materials as a standard digital-camera sensor, but has the unique ability to conform to convoluted, irregular surfaces.The technology is already showing promise for photography, as the researchers conformed the array to a hemispherical shape and incorporated the device into ... More at http://www.nsf.gov/news/news_summ.jsp?cntn_id=112012&govDel=USNSF_51 This is an NSF News item.

Copyright © 2006 Rootio Ltd. All rights reserved.