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

Green Car Congress

Researchers at the University of Delaware have shown that ruthenium deposited on titania is an active and selective catalyst for breaking down polypropylene into valuable lubricant-range hydrocarbons with narrow molecular weight distribution and low methane formation at low temperatures of 250 °C with a modest H 2 pressure. 1c00874.

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University of Delaware Licenses V2G Technology to AutoPort; 100 V2G EVs as Test Fleet

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The University of Delaware has signed the first license for its vehicle-to-grid (V2G) technology with AutoPort, Inc., Bi-directional power converter up to 18 kW. The company currently is completing four vehicles for the State of Delaware and expects to have the first 100 vehicles produced in the next 12 to 18 months, he said.

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SCAQMD awards AC Propulsion $300K grant for 3 electric service van conversions

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AC Propulsion will launch the conversion program by developing the electric propulsion system and conversion process for the full-size vans that are used by service fleets nationwide. The converted vans will run on electricity only and will charge directly from the power grid. Earlier post.). Earlier post.).

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New inexpensive catalyst for conversion of CO2 to CO could help with storage of renewable energy

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Researchers at the University of Delaware have developed an inexpensive bismuth?carbon carbon monoxide evolving catalyst (Bi-CMEC) that can be used in conjunction with ionic liquids to convert CO 2 to carbon monoxide (CO) using electricity. Carbon Capture and Conversion (CCC) Fuels Power Generation'

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AC Propulsion and AutoPort, Inc. Partner to Develop EV Conversion Prototype for US Postal Service Feasibility Study

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AC Propulsion and AutoPort , an automotive conversion, restyling and processing company, will partner in engineering, development and conversion to provide an Electric Vehicle conversion prototype and report for the United States Postal Service. AutoPort will convert the vehicle on-site at its facilities in New Castle, Delaware.

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BNL, U Delaware team develops catalytic strategy for C-O bond activation; upgrading biomass to fuels and chemicals

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Researchers at Brookhaven National Laboratory (BNL) and the University of Delaware have developed a catalytic strategy to promote the selective breaking of a carbon-oxygen bond—an essential step the conversion of lignocellulsoic biomass via hydrodeoxygenation to fuels and chemicals. —Anibal Boscoboinik.

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Researchers show mixotrophic fermentation process improves carbon conversion, boosting yields and reducing CO2

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One way to mitigate high feedstock cost is to maximize conversion into the bioproduct of interest. This maximization, though, is limited because of the production of CO 2 during the conversion of sugar into acetyl-CoA in traditional fermentation processes. Wiedel, Jennifer Au, Maciek R. Antoniewicz, Eleftherios T.