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UD team devises CO2 direct air capture device powered by hydrogen for HEMFCs

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University of Delaware engineers have demonstrated an effective way to capture 99% of carbon dioxide from the ambient air feed to an hydroxide exchange membrane fuel cell (HEMFC) air using a novel electrochemical system powered by hydrogen. Source: University of Delaware.

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

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Alternatively, syngas can be added to sugar fermentation to provide the necessary reducing power and carbon. … They can take carbon dioxide and hydrogen gas and turn them into chemicals such as acetone, butanol or ethanol. We get both the increase in yield and consumption of all the carbon. Jones et al. Click to enlarge.

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DOE awards $35M to 15 projects in ARPA-E ECOSynBio program to reduce carbon footprint of biofuel production

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The US Department of Energy (DOE) is awarding $35 million to 15 research projects through ARPA-E’s “Energy and Carbon Optimized Synthesis for the Bioeconomy” (ECOSynBio) program to decarbonize biorefining processes used across the energy, transportation, and agriculture sectors. Carbon-Negative Chemical Production Platform - $4,160,262.57.

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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 carbon monoxide evolving catalyst (Bi-CMEC) that can be used in conjunction with ionic liquids to convert CO 2 to carbon monoxide (CO) using electricity. Carbon Capture and Conversion (CCC) Fuels Power Generation'

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Air Liquide expands CO2 liquefaction operations in California; source from ethanol plant

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LP is opening a new carbon dioxide liquefaction plant in the California central valley. The new 450-ton facility, located in Tulare County, will capture carbon dioxide gases from an ethanol plant owned by Calgren Renewable Fuels, LLC. carbon dioxide plant. Those plants are located in: Delaware City, Del.; Martinez, Calif.;

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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. Qi Lu, Jonathan Rosen, Yang Zhou, Gregory S.

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EIA releases report on CO2 emissions by state; California led in 2010 with transportation-sector emissions

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The US Energy Information Administration (EIA) has released a new report, State-Level Energy-Related Carbon Dioxide Emissions, 2000-2010. The report shows a significant variation of energy-related carbon dioxide emissions across states on both an absolute and a per capita basis. Source: EIA. Click to enlarge. million tonnes).

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