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NREL develops novel method to produce renewable acrylonitrile; carbon fibers from renewable biomass

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Researchers from the National Renewable Energy Laboratory (NREL) and their colleagues have devised a novel catalytic method to produce renewable acrylonitrile (ACN) using 3-hydroxypropionic acid (3-HP), which can be biologically produced from sugars. Conceptual process diagram for renewable ACN production from biomass sugars.

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UC Santa Barbara team develops catalytic molten metals for direct conversion of methane to hydrogen without forming CO2

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Researchers at the University of California Santa Barbara have developed catalytic molten metals to pyrolize methane to release hydrogen and to form solid carbon. The insoluble carbon floats to the surface of the melt, where it can be removed and stored or incorporated into composite materials. C) Raman spectrum of surface carbon.

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U Kentucky CAER receives $1M for carbon fiber research

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Department of Energy (DOE) grant to continue their research in developing low-cost, high-strength carbon fiber. The center’s Carbon Materials Technologies Group received the award for a project titled “Precursor Processing Development for Low Cost, High Strength Carbon Fiber for Composite Overwrapped Pressure Vessel Applications.”

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Global Bioenergies plans to acquire Dutch start-up Syngip; gaseous carbon feedstocks for renewable isobutene process

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Global Bioenergies, the developer of a process to convert renewable resources into light olefin hydrocarbons via fermentation (with an initial focus on isobutene) ( earlier post ), signed a contribution agreement with the shareholders of Syngip B.V. to transfer all Syngip shares to Global Bioenergies S.A. Earlier post.) Earlier post.).

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Cambridge team develops optimization tool including LCA for developing bio-renewables-based processes

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A team at the University of Cambridge (UK) has developed a decision support tool for developing optimal processes for bio-renewable-based energy solutions and chemicals manufacturing. 2017), A multi-objective optimization including results of life cycle assessment in developing bio-renewables-based processes. Helmdach, D.,

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California Energy Commission to award up to $3M to support development of bio-oil as intermediate for renewable jet fuel

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The California Energy Commission is issuing a solicitation ( GFO-17-901 ) to provide up to $3 million in funding for innovative, pre-commercial low-carbon fuel production processes that result in the development of bio-oil as an intermediate fuel with wide-scale adoption potential used for renewable jet fuel production.

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New efficient biphasic catalytic process for conversion of biomass to dense jet-range fuels

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Now, researchers from the University of Nevada and Washington State University have developed a novel efficient biphasic tandem catalytic process (biTCP) for synthesizing cycloalkanes from renewable terpenoid biomass (such as 1,8-cineole). A paper on their work is published in the RSC journal Green Chemistry. Biphasic catalysis (i.e.,