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

Green Car Congress

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). Cyclic hydrocarbons (i.e. —Yang et al. —Yang et al. —Yang et al.

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ORNL-led team uses carbon material derived from tire waste to convert used cooking oil to biofuel

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Using a novel, reusable carbon material derived from old rubber tires, an Oak Ridge National Laboratory (ORNL)-led research team has developed a simple method to convert used cooking oil into biofuel. The patent-pending, waste oil-to-biofuel conversion adds a new approach to waste tire recycling initiatives. —Hood et al.

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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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Researchers from the University of Liverpool (UK), with colleagues from Dalian University of Technology (China) and the University of Hull (UK), have developed a new process for the direct, one-step activation of carbon dioxide and methane (dry reforming of methane) into higher value liquid fuels and chemicals (e.g.,

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Researchers boost efficiency of using coffee grounds for biodiesel feedstock

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Researchers at Lancaster University in the UK have found a way to significantly improve the efficiency of using spent coffee grounds to make biofuels. The hexane is then evaporated to leave behind the oils. Methanol and a catalyst is then added to make biodiesel, and a glycerol by-product—which also needs separating.

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Hydrogen Opposed Piston Engine Working Group formed

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—James Turner, Professor of Mechanical Engineering, Clean Combustion Research Center, King Abdullah University of Science and Technology (KAUST). A study of a 2017 Toyota Mirai fuel cell by Argonne National Laboratory found fuel cell stack efficiency below 50% and fuel cell system efficiency dropping below 40% at high loads.

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Study: expanding Brazilian sugarcane for ethanol could reduce global CO2 emissions by up to 5.6%

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Vastly expanding sugarcane production in Brazil for conversion to ethanol could reduce current global CO 2 emissions by as much as 5.6%, according to a new study by an international team led by researchers from the University of Illinois. of crude oil consumption and 1.5–5.6% The corresponding range of CO 2 offsets is 0.55–2.0

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OSU team developing Gas and Biomass to Liquids (GBTL) technology for production of liquid hydrocarbons

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Researchers at Oklahoma State University are developing a novel natural Gas and Biomass to Liquids (GBTL) technology that will synergistically use biomass (e.g. Bio-oil produced from biomass fast pyrolysis technology can be converted into hydrocarbons; however, this process is challenging due to the instability of bio-oil.

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