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Audi introduces new CNG A3 Sportback

Green Car Congress

This is supplemented by the additional range offered by the reserve gasoline tank with a net usable volume of 9 liters (2.4 The four-cylinder always starts in CNG mode, only injecting slight amounts of gasoline under rare operating conditions. Audi sources the CO 2 from an adjacent biogas plant that recycles agricultural waste.

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€7M German project to develop processes and demand scenarios for the mass production of synthetic fuels; “Refineries for Future”

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In spite of increasing electric mobility in the transport sector, we will continue to need liquid fuels for a long time. REF4FU covers the use of sustainable hydrogen; pyrolysis oil based on biological residues, such as straw or waste wood; methanol from renewable feedstocks; and Fischer-Tropsch oil that corresponds to green crude oil.

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Argonne LCA study finds many alternative fuels consume more water than petroleum and natural gas fuels

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Researchers at Argonne National Laboratory have analyzed the water consumption for transportation fuels in the United States using an extended lifecycle system boundary that includes the water embedded in intermediate processing steps. Increases in population, energy and food demand now strain previously abundant sources of water.

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Argonne releases GREET 2020

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Vehicle technologies include conventional internal combustion engines, hybrid-electric systems, battery-electric vehicles, and fuel-cell-electric vehicles. Fuel/energy options include petroleum fuels, natural gas-based fuels, biofuels, hydrogen, and electricity. Green ammonia.

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Audi opens power-to-gas facility in Werlte/Emsland; e-gas from water, green electricity and CO2

Green Car Congress

The Audi e-gas plant, which can convert 6MW of input power, utilizes renewable electricity for electrolysis to produce oxygen and hydrogen. Water and oxygen are the only by-products. The waste heat given off during methanation is used as process energy in the adjacent biogas plant, significantly increasing overall efficiency.

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UC Riverside researchers receive two grants to advance steam hydrogasification reaction for waste-to-fuels

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Researchers at the University of California, Riverside’s Center for Environmental Research and Technology (CERT) at the Bourns College of Engineering have received two grants to further explore a steam hydrogasification process they developed to convert waste into fuels. diesel, gasoline, jet) at low cost. Earlier post.).

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DOE EERE awarding $43.6M for Phase II SBIR projects

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Mainstream Engineering Corporation is developing a hydrothermal liquefaction (HTL) process to convert food wastes to renewable diesel and jet fuels that will improve yield and quality, and reduce aqueous byproducts to advance commercial adoption. is developing Lithium metal batteries with improved cycle life for electric vehicles.

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