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New process uses localized surface plasmons for room-temperature conversion of CO2 to CO

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Researchers at the National Institute of Standards and Technology (NIST) and their colleagues have demonstrated a room-temperature method that could significantly reduce carbon dioxide levels in fossil-fuel power plant exhaust, one of the main sources of carbon emissions in the atmosphere. Credit: NIST.

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European consortium begins demonstration project for conversion of woody biomass to chemicals: BIOFOREVER

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BIOFOREVER (BIO-based products from FORestry via Economically Viable European Routes)—a consortium of 14 European companies—has started a demonstration project for the conversion of woody biomass to value-adding chemical building blocks such as butanol, ethanol, and 2,5–furandicarboxylic acid (FDCA) on an industrial scale.

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EU investing €1.8B in 17 large-scale clean tech projects

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Grants will be disbursed from the Innovation Fund to help bring technologies to the market in energy-intensive industries, hydrogen, renewable energy, carbon capture and storage infrastructure, and manufacturing of key components for energy storage and renewables. capture and liquefaction at a cement plant to storage in offshore sites.

Clean 334
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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.

Carbon 150
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Ørsted proposes to develop one of the world’s largest renewable hydrogen plants: SeaH2Land

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Ørsted, the world’s leading offshore wind developer, together with the major industrial companies in the North Sea Port cluster, have launched the SeaH2Land vision for a gigawatt scale project to reduce carbon emissions in the Dutch-Flemish industrial cluster with renewable hydrogen.

Hydrogen 284
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Study suggests that decarbonizing US transport sector by converting waste CO2 to fuels would require economical air-capture of CO2

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Kreutz used two examples of CCTF systems in his analysis: biodiesel from microalgae and Sandia National Laboratory’s S2P process (an effort to utilize concentrated solar energy to convert waste CO 2 into synthetic fuels, earlier post ). 90%) or to “repower” using lower carbon feedstocks or generation technologies (e.g.

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DSM acquiring C5 Yeast Company to strengthen position in cellulosic ethanol

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Bergen op Zoom, Netherlands) from Royal Cosun. DSM currently is already capable of offering both enzyme and yeast fermentation technologies to increase conversion rates to make the technology commercially viable. Royal DSM, a global life sciences and materials sciences company, is acquiring C5 Yeast Company B.V.

Companies 186