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NCSU team develops catalyst for thermal hybrid water-splitting and syngas generation with exceptional conversion; H2 gas and liquid fuels

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Researchers at North Carolina State University have developed a highly effective new perovskite-promoted iron oxide redox catalyst for a hybrid solar-redox scheme they had proposed earlier for partial oxidation and water-splitting of methane. Schematic of the hybrid process for liquid fuel and hydrogen generation.

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DOE awards $97M to 33 bioenergy research and development projects

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University of Alabama. University of North Dakota. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. North Carolina State University. Oregon State University. Microchannel Reactor for Ethanol to n-Butene Conversion. University of Cincinnati.

Waste 186
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New polymer membrane efficiently removes carbon dioxide from mixed gases; high permeability and selectivity

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A team of researchers from North Carolina State University, SINTEF in Norway and the Norwegian University of Science and Technology, has developed a polymer membrane technology that removes carbon dioxide from mixed gases with both high permeability and high selectivity.

Polymer 186
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Lux Research: cost of electrofuels remains far from viable

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The cost of electrofuels—fuels produced by catalyst-based systems for light capture, water electrolysis, and catalytic conversion of carbon dioxide and hydrogen to liquid fuels—remains far away from viable, according to a new analysis by Lux Research. Production costs per barrel of oil equivalent. Source: Lux Research.

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DOE Selects 42 University-Led Nuclear Research and Development Projects for $38 Million in Funding

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The US Department of Energy (DOE) has selected 42 university-led research and development projects for awards totaling $38 million. These projects, funded over three to four years through the Department’s Nuclear Energy University Program, are intended to help advance nuclear education and develop the next generation of nuclear technologies.

Universal 186
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UNC team synthesizes silicon nanowires that split water

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Researchers from the University of North Carolina have synthesized high-photovoltage multijunction Si nanowires (SiNWs) that are co-functionalized to split water catalytically. 2023) “Water splitting with silicon p–i–n superlattices suspended in solution.” A paper on their work is published in the journal Nature.

Water 221
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Start-up commercializing NC State technology for drop-in biofuels; full commercial production targeted for 2016

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Avjet Biotech will sell stock and use the funds raised to reimburse the university for its investment in patent applications, as well as allocate development capital to create a continuous production model for the biofuel refining system. Water is removed from the free fatty acid (FFA) stream prior to the next processing step: deoxygenation.