To create a compelling microfuel cell technology, scientists have to look at providing power densities that are comparable to that of conventional or rechargeable batteries. Direct methanol fuel cell (DMFC), a popular fuel cell technology, only provides power density in the range of 20 to 50 mille watts per square cm (mW/cm2).
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Gustav brings down cell, Internet service
(AP) -- Power outages caused by Hurricane Gustav brought down cellular and Internet service in parts of Louisiana, but its impact was much milder than that of Katrina.
Phone companies prepare backup plans for Gustav
(AP) -- The tropical storm bearing down on the Gulf Coast could be a test for the country's wireless carriers, which faced criticism and a regulatory push after Hurricane Katrina took out networks.
DOE JGI Director highlights the genomics of plant-based biofuels in the journal Nature
Genomics is accelerating improvements for converting plant biomass into biofuel—as an alternative to fossil fuel for the nation's transportation needs, reports Eddy Rubin, Director of the U.S. Department of Energy Joint Genome Institute (DOE JGI), in the August 14 edition of the journal
Nature. In "Genomics of cellulosic biofuels," Rubin lays out a path forward for how emerging genomic technologies will contribute to a substantially different biofuels future as compared to the present corn-based ethanol industry—and in part mitigate the food-versus-fuel debate.
Nissan Motor unveils new prototype electric car
Nissan Motor Co. unveiled a new prototype electric vehicle Wednesday with batteries twice as powerful as conventional technology, aiming to take a lead in zero-emission cars.
Scientists mimic essence of plants' energy storage system
In a revolutionary leap that could transform solar power from a marginal, boutique alternative into a mainstream energy source, MIT researchers have overcome a major barrier to large-scale solar power: storing energy for use when the sun doesn't shine.
Fuel from food waste: bacteria provide power
Researchers have combined the efforts of two kinds of bacteria to produce hydrogen in a bioreactor, with the product from one providing food for the other. According to an article in the August issue of
Microbiology Today, this technology has an added bonus: leftover enzymes can be used to scavenge precious metals from spent automotive catalysts to help make fuel cells that convert hydrogen into energy.
Oxygen Ions for Fuel Cells Get Loose at Low Temperatures
Seeking to understand a new fuel cell material, a research team working at the National Institute of Standards and Technology (NIST), in collaboration with the University of Liverpool, has uncovered a novel structure that moves oxygen ions through the cell at substantially lower temperatures than previously thought possible. The finding announced this month in Nature Materials may be key to solving fuel cell reliability issues and lead to reduced operating costs in high-performance stationary fuel cells.
As energy bills soar, Japanese test fuel of future
As world oil prices skyrocket, thousands of households in energy-poor Japan are taking part in an ambitious experiment to use fuel cells to light and heat their homes.