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New technology converts waste polyethylene to jet fuel in an hour

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Washington State University researchers have developed an innovative way to convert waste polyethylene plastic to ingredients for jet fuel and other valuable products, making it easier and more cost-effective to reuse plastics. This work is a milestone for us to advance this new technology to commercialization. —Jia et al.

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U Delaware team develops chemocatalytic process to convert waste polypropylene to lube oils

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They were able to convert amorphous polypropylene and everyday bags and bottles effectively to lubricants with yields up to 80+%. Chemocatalytic technologies—such as that described in the paper—are emerging as a more promising approach to achieve plastic recycling and upcycling. Kots, Sibao Liu, Brandon C. 1c00874.

Delaware 435
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LanzaTech, Northwestern, ORNL engineer microbe to convert industrial waste gases to acetone or isopropanol

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A team of scientists from LanzaTech, Northwestern University and the Department of Energy’s Oak Ridge National Laboratory have engineered a microbe to convert molecules of industrial waste gases, such as carbon dioxide and carbon monoxide, into acetone and isopropanol (IPA). —Jennifer Holmgren, CEO of LanzaTech. Abdalla, T.

Waste 273
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bp ventures invests $10M in waste-to-biomethanol company WasteFuel; offtake MoU

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bp ventures has committed $10 million, leading the Series B investment round, in WasteFuel , a California-based biofuels company that will use proven, scalable technologies to convert bio-based municipal and agricultural waste into lower carbon fuels, such as biomethanol. billion metric tons by 2050.

Waste 284
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Twelve and LanzaTech successfully convert CO2 to ethanol

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It’s also often produced using corn and other crop feedstocks, but this approach is dependent on crops that otherwise could be used to grow food or waste feedstocks. Our partnership with Twelve provides us with the feedstock needed to create critical resources like ethanol without adding CO 2 to the atmosphere.

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Strategic Biofuels licenses Johnson Matthey-bp FT CANS technology for Louisiana plant

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Strategic Biofuels has selected Johnson Matthey’s (JM’s) Fischer Tropsch (FT) CANS technology—co-developed with bp—for its Louisiana Green Fuels project (LGF) in Caldwell Parish, Louisiana. Resources Peacock, M., million gallons of biofuels per year once in operation. Paterson, J.,

Louisiana 284
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EU project HyFlexFuel converted sewage sludge and other biomasses into kerosene by hydrothermal liquefaction (HTL); SAF

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The EU-funded research project HyFlexFuel recently successfully produced biocrudes via hydrothermal liquefaction (HTL) from a variety of biomasses, including sewage sludge, food waste, manure, wheat straw, corn stover, pine sawdust, miscanthus and microalgae in a pilot-scale continuous HTL plant at Aarhus University (Denmark).

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