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Researchers discover novel water-assisted approach to double or triple rate of furfural conversion

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Researchers at the University of Oklahoma, in collaboration with the University of Tulsa, have a novel approach for the water-assisted upgrading of the renewable chemical furfural, doubling or tripling the rate of conversion. Energy and water are interconnected in the production of renewable fuels. —Zhao et al.

Water 207
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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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Researchers at the University of Cambridge, with colleagues at the University of Tokyo, have developed a standalone device that converts sunlight, carbon dioxide and water into formic acid, a carbon-neutral fuel, without requiring any additional components or electricity. —senior author Professor Erwin Reisner. Qian Wang et al.

Water 418
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BMW i Ventures invests in Prometheus Fuels; CO2 air-capture and conversion to carbon-neutral gasoline

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The average car stays on the road for over eight years; meaning that even if the whole world switched to buying 100% electric cars tomorrow, it would still take almost a decade for today’s internal combustion engines to be off the road. The separation of ethanol and other fuel products from water. to C 2 fuel products such as ethanol.

Gasoline 321
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Lufthansa, ETH Zürich, Climeworks & Synhelion to cooperate on Sustainable Aviation Fuels; CO2 capture & solar thermochemical conversion

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The researchers and engineers at ETH Zurich have developed innovative processes that make it possible to extract CO 2 from the atmosphere and, together with water and with the help of concentrated sunlight, convert it into a synthesis gas that can be used to produce jet fuel.

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Volkswagen 2.0 TDI diesel for Euro 6d; SCR twin-dosing

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Volkswagen continues to refine its most important diesel engine, the 2.0-liter The four-cylinder TDI engine with the internal designation EA 288 made its debut in 2012. The four-cylinder TDI engine with the internal designation EA 288 made its debut in 2012. The engine was also prepared for integration into a mild hybrid system.

Diesel 435
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Researchers use multifunctional co-solvent pair to uncover molecular principles of biomass breakdown for conversion to transportation fuels

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Plant cell walls resist chemical or biological degradation, making the breakdown of lignocellulosic biomass into renewable chemical precursors for conversion into chemicals and transportation fuels challenging and costly. Co-solvents THF and water cause lignin to dissociate from itself and cellulose, expanding into a random coil.

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DGIST-led team improves efficiency of photocatalyst for conversion of atmospheric CO2 to hydrocarbon fuels

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Professor Su-Il In of DGIST’s Department of Energy Science and Engineering and his colleagues modified a blue titania photocatalyst by adding copper and platinum nanoparticles to its surface. Carbon dioxide gas and water vapor moved through the chamber, passing over the catalyst. Grimes, Craig A. doi: 10.1039/C9EE00734B.