Subscribe free to our newsletters via your
. GPS News .




BIO FUEL
A cheaper drive to 'cool' fuels
by Tracey Bryant
Newark DE (SPX) Jun 25, 2013


Joel Rosenthal (left) and doctoral student John DiMeglio at work in Rosenthal's lab in the UD Department of Chemistry and Biochemistry.

University of Delaware chemist Joel Rosenthal is driven to succeed in the renewable energy arena. Working in his lab in UD's Department of Chemistry and Biochemistry, Rosenthal and doctoral student John DiMeglio have developed an inexpensive catalyst that uses the electricity generated from solar energy to convert carbon dioxide, a major greenhouse gas, into synthetic fuels for powering cars, homes and businesses.

The research is published in the Journal of the American Chemical Society.

Gold and silver represent the "gold standard" in the world of electrocatalysts for conversion of carbon dioxide to carbon monoxide. But Rosenthal and his research team have pioneered the development of a much cheaper alternative to these pricey, precious metals. It's bismuth, a silvery metal with a pink hue that's a key ingredient in Pepto-Bismol, the famous pink elixir for settling an upset stomach.

An ounce of bismuth is 50 to 100 times cheaper than an ounce of silver, and 2,000 times cheaper than an ounce of gold, Rosenthal says. Bismuth is more plentiful than gold and silver, it is well distributed globally and is a byproduct in the refining of lead, tin and copper.

Moreover, Rosenthal says his UD-patented catalyst offers other important advantages: selectivity and efficiency in converting carbon dioxide to fuel.

"Most catalysts do not selectively make one compound when combined with carbon dioxide - they make a whole slew," Rosenthal explains. "Our goal was to develop a catalyst that was extremely selective in producing carbon monoxide and to power the reaction using solar energy."

Many of us hear '"carbon monoxide" and think "poison."

"It's true that you do not want to be in a closed room with carbon monoxide," Rosenthal says. "But carbon monoxide is very valuable as a commodity chemical because it's extremely energy rich and has many uses."

Carbon monoxide is used industrially in the water-gas shift reaction to make hydrogen gas. It also is a prime feedstock for the Fischer-Tropsch process, which allows for the production of synthetic petroleum, gasoline and diesel.

Commercial production of synthetic petroleum is under way or in development in a number of countries, including Australia and New Zealand, China and Japan, South Africa and Qatar.

Rosenthal says that if carbon dioxide emissions become taxed in the future due to continuing concerns about global warming, his solar-driven catalyst for making synthetic fuel will compete even better economically with fossil fuels.

"This catalyst is a critically important linchpin," Rosenthal says.

"Using solar energy to drive the production of liquid fuels such as gasoline from CO2 is one of the holy grails in renewable energy research. In order to do this on a practical scale, inexpensive catalysts that can convert carbon dioxide to energy-rich compounds are needed. Our discovery is important in this regard, and demonstrates that development of new catalysts and materials can solve this problem. Chemists have a big role to play in this area."

Rosenthal credits a scientific article published during America's first energy crisis in the 1970s for piquing his interest in bismuth. At that time, many researchers were examining the conversion of carbon dioxide to carbon monoxide using electricity and metal electrodes. The research went bust in the early 1980s when federal funding dried up. Rosenthal picked up the trail and blazed a new one.

"With this advance, there are at least a dozen things we need to follow up on," Rosenthal notes. "One successful study usually leads to more questions and possibilities, not final answers."

.


Related Links
Department of Chemistry and Biochemistry at University of Delaware
Bio Fuel Technology and Application News






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








BIO FUEL
Novel cellulose structure requires fewer enzymes to process biomass to fuel
Los Alamos NM (SPX) Jun 24, 2013
Improved methods for breaking down cellulose nanofibers are central to cost-effective biofuel production and the subject of new research from Los Alamos National Laboratory (LANL) and the Great Lakes Bioenergy Research Center (GLBRC). Scientists are investigating the unique properties of crystalline cellulose nanofibers to develop novel chemical pretreatments and designer enzymes for biofuel pro ... read more


BIO FUEL
Pesticides tainting traditional China herbs: Greenpeace

Research suggests plants capable of employing quantum physics

Talks on EU agriculture policy reforms in make-or-break stage

African palm oil makers hit back at global 'smear campaign'

BIO FUEL
Making memories: Practical quantum computing moves closer to reality

Samsung unveils hybrid Windows/Android tablet/laptop

Northrop Grumman Develops New Gallium Arsenide E-Band High-Power Monolithic Microwave Integrated Circuits

New Additive Offers Near-Perfect Results as Nucleating Agent for Organic Semiconductors

BIO FUEL
Airbus shows off new military transport plane

India's Avro replacement fails to lift off

F-35 costs kick up more controversy outside U.S.

US to sell military helicopters to Thailand

BIO FUEL
Arnie defends his Hummer fleet as eco-friendly

Wolf urine, lion's roar keep deer from Japan transport

Tesla recalls Model S cars over problem weld

US auto giant GM plans to invest $11 billion in China

BIO FUEL
Melting ice pulls Norway closer to Asia

China outsmarted US in Snowden chess game: experts

Flagship Indian retailer opens in Pakistan

Chinese business leaders to head to France, Belgium

BIO FUEL
The contribution of particulate matter to forest decline

Whitebark Pine Trees: Is Their Future at Risk

Brazil's restive natives step protests over land rights

Brazilian official resigns over indigenous protests

BIO FUEL
Vegetation as Seen by Suomi NPP

How did a third radiation belt appear in the Earth's upper atmosphere

Arianespace to launch Gokturk-1 high-resolution observation satellite

Cassini Probe to Take Photo of Earth From Deep Space

BIO FUEL
Sound waves precisely position nanowires

Nanoparticle Opens the Door to Clean-Energy Alternatives

Spot-welding graphene nanoribbons atom by atom

Nano-thermometer enables first atomic-scale heat transfer measurements




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement