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New inexpensive catalyst for conversion of CO2 to CO could help with storage of renewable energy

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Researchers at the University of Delaware have developed an inexpensive bismuth?carbon Storage of solar and other sources of renewable electricity may be enabled by the catalytic production of fuels such as H 2 or reduced carbon-containing compounds via the electro-chemical reduction of H 2 O or CO 2 , respectively.

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New highly selective and efficient catalyst for reduction of CO2 to CO

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Researchers at the University of Delaware have developed a highly selective nanoporous silver catalyst capable of electrochemically reducing carbon dioxide to carbon monoxide with 92% efficiency. The carbon monoxide then can be used to produce synthetic fuels and chemicals. The researcher reported their findings in Nature Communications.

CO2 210
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DOE Awards $377 Million in Funding for 46 Energy Frontier Research Centers

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Center for Direct Catalytic Conversion of Biomass to Biofuels (C3Bio). $20. Use fundamental knowledge about the interactions between catalysts and plant cell walls to design improved processes for the conversion of biomass to energy, fuels, or chemicals. Solar Energy Conversion in Complex Materials (SECCM).

Energy 150
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US DOT Awards $100M in Recovery Act Funds to 43 Transit Projects to Reduce Energy Consumption and Greenhouse Gas Emissions

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Laredo Bus Facility Solar Canopies: Provide shade structures with integrated, grid tied photovoltaic cells to be erected on the bus storage lot at the Laredo Bus Maintenance Facility. PV Solar Implementation at facilities: Install PV solar in a variety of facilities. Delaware Transit Corporation, Delaware: $1,500,000.

Emissions 256
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DOE FCTO selects 11 fuel cell incubator projects for up to $10M in awards; exploring alkaline exchange membrane FCs

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Conversely, there are several factors that either limit or have been perceived to limit AMFCs. Develop a novel photocatalyst particle-based slurry reactor with the potential for low-cost renewable hydrogen production via solar water splitting. University of Delaware. University of California, Irvine.

Fuel 150
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NSF Awards $40M in 20 Grants for Research on Natural Systems, Including 8 Projects for Obtaining Hydrocarbons from Plants and Microorganisms

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The project “Maximizing Conversion of Biomass Carbon to Liquid Fuel” (0938033) will be led by Rakesh Agrawal, with colleagues Mahdi Abu-Omar, Nicholas C. Fundamental discoveries from this project will uncover links between the physical and chemical structure of biomass to the conversion process. Quick conversion of biomass.

Grant 170
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Researchers show mixotrophic fermentation process improves carbon conversion, boosting yields and reducing CO2

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One way to mitigate high feedstock cost is to maximize conversion into the bioproduct of interest. This maximization, though, is limited because of the production of CO 2 during the conversion of sugar into acetyl-CoA in traditional fermentation processes. Wiedel, Jennifer Au, Maciek R. Antoniewicz, Eleftherios T.