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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. In the recycling industry, the cost of recycling is key. wt %, respectively. —Jia et al.

Convert 436
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Universal Hydrogen completes first taxi tests; granted experimental airworthiness certificate by FAA; Air New Zealand agreement

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Universal Hydrogen was granted a special airworthiness certificate in the experimental category by the Federal Aviation Administration (FAA) to proceed with the first flight of its hydrogen-powered regional aircraft. —Paul Eremenko, co-founder and CEO of Universal Hydrogen Air New Zealand.

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NREL, MIT, WSU team develops process to convert lignin to aromatic blendstock for 100% sustainable aviation fuel

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Other parts of plants are used for biofuels, but lignin has been largely overlooked because of the difficulties in breaking it down chemically and converting it into useful products. Lignin makes up the rigid parts of the cell walls of plants.

MIT 195
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DOE awards $35M to 15 projects in ARPA-E ECOSynBio program to reduce carbon footprint of biofuel production

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Many biofuels, including ethanol, biodiesel and other products derived from organic material (biomass), are almost exclusively produced via fermentation. Carbon-Negative Chemical Production Platform - $4,160,262.57. University of Wisconsin-Madison. Stanford University. The awardees are: LanzaTech, Inc.

Carbon 303
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WSU, GTI system uses electrochemical reforming of ethanol for compressed hydrogen production; CAPER

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A team from Washington State University (WSU) and the Gas Technology Institute have used an ethanol and water mixture and a small amount of electricity in an electrochemical conversion system to produce pure compressed hydrogen. A paper on the work is published in the journal Applied Catalysis A. 2022.118647.

Hydrogen 243
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C2CNT process converts flue gas from natural gas power plant into carbon nanotubes

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new developments of the transformation are reported including use of a nickel super-alloy electrode, critical thermal balance of the process, demonstration of the secondary pure, hot oxygen product, and alkali control of the carbon nanotube structure. In a related new study in the Journal of CO 2 Utilization (Wang et al. ) Left and center.

Carbon 353
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Ramaco Carbon partnering with ORNL on new processes to make graphite from coal

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The efforts on graphite are part of a larger research partnership between Ramaco and the Oak Ridge National Laboratory over the past three years, exploring a wide range of alternative uses of coal to make higher-value carbon products and materials.

Coal 210