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NTU Singapore to develop technologies to extract hydrogen from liquid organic hydrogen carriers

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Chiyoda Corporation, which is headquartered in Japan, will serve as NTU’s key partner in the project, and will offer technical contribution based on their proprietary dehydrogenation catalyst technology, SPERA Hydrogen ( earlier post ), to the University to be developed and implemented on a national scale.

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Australian techno-economic analysis of renewable aviation fuels identifies research priorities to lower the high costs

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The results of the study, which was conducted as part of the Queensland Sustainable Aviation Fuel Initiative , were presented at the Boeing-hosted Aero Environment Summit in Sydney. Pongamia pinnata is a legume tree which produces a seed rich in oil.) million project. Klein-Marcuschamer, D., Dietzgen, R. Gresshoff, P. Hankamer, B.,

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Researchers Sequence Genome of Sugarcane Ethanol Yeast; Potential for Cellulosic Ethanol

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Researchers from Duke University Medical Center, the University of North Carolina, and Brazil have sequenced the genome of PE-2, a strain of the yeast Saccharomyces cerevisiae that thrives on turning sugarcane into ethanol. When oil prices rose to new highs in the 1970s, Brazil invested in ethanol created from the its sugar cane crops.

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Expert panel report finds achieving 1M plug-in vehicles in US by 2015 would require concentrated action to overcome barriers

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A new study sponsored by Indiana University concludes that President Obama’s vision of one million plug-in electric vehicles (PEVs) on US roads by 2015 will require concentrated efforts action from all stakeholders— the auto industry, federal government, the scientific community, and consumers—to be realized.

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

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The production costs for most chemicals via microbial fermentation are currently high compared to oil-derived products primarily because of operating costs associated with feedstock and feedstock processing. Acetogens are anaerobic bacteria, which cannot grow in oxygenated environments. In this study, researchers tested how C.