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Researchers use chemical looping process to produce hydrogen from hydrogen sulfide gas

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Researchers at The Ohio State University have used a chemical looping process to produce hydrogen from hydrogen sulfide gas—commonly called “sewer gas”. The process uses relatively little energy and a relatively cheap material—iron sulfide with a trace amount of molybdenum as an additive. —Kalyani Jangam, lead author.

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Europe/US team: transitioning to a low-carbon world will create new rivalries, winners and losers

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For example, rich countries such as Germany can throw billions of dollars at their coal sector to ease their transition pain, offering generous financial aid to lignite-producing regions. Green-technology corporations dominate the Fortune 500 by 2030. Technology breakthrough. ?A Technology leaders hold the power.

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Lux Research: cost of electrofuels remains far from viable

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With technology improvements—specifically advances in microbial yield and catalyst efficiency—production costs for electrofuels drop to below $150 per barrel. The DOE made a $122 million investment for five years for the latter institute spearheaded by the California Institute of Technology and US DOE Lawrence Berkeley Laboratory.

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Researchers develop new Fischer-Tropsch catalyst and production method; Total patents both

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A team of researchers led by University of Amsterdam (UvA) chemists has developed new Fischer-Tropsch catalysts—consisting of ultra-thin cobalt shells surrounding inexpensive iron oxide cores—that can be used to produce synthetic fuels from natural gas and biomass. But cobalt is also expensive.

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CMU study finds controlled EV charging can reduce generation cost, but at greater health and environmental costs depending upon the generation mix

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A paper describing the work is published in the ACS journal Environmental Science & Technology. Results from the study also suggest that with sufficient coal plant retirement and sufficient wind power, controlled charging could result in positive net benefits instead of negative. other parts of the US and the world could be different.

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S. Korean researchers develop new catalytic pathway for direct conversion of CO2 to liquid hydrocarbon fuels

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A team led by Professor Jae Sung Lee at Ulsan National Institute of Science and Technology (UNIST), with colleagues at Pohang University of Science and Technology (POSTECH), have developed a new pathway for the direct conversion of CO 2 to liquid transportation fuels by reaction with renewable hydrogen produced by solar water splitting.

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UK, Saudi team shows hydrocarbon wax is a viable, safe medium for on-board hydrogen storage

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The F-T wax can be manufactured using renewable energy and any carbon-containing resources including biomass, CO 2 , natural gas, coal—and the resulting carbon residue from the hydrogen-depleted wax. Important efforts have been made previously to liberate pure hydrogen from the catalytic decomposition of the lightest alkane, methane.

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