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INEOS Bio Begins Advanced Waste-to-Ethanol Plant Feasibility Study

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The INEOS Bio waste-to-ethanol process, originally developed by BRI. Subsequent expansion could turn the initial plant into a fully integrated bio-refinery by 2015. Converting household organic wastes into bio-fuel and clean energy can deliver very attractive environmental and social benefits to the North East and the UK as a whole.

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INEOS Bio Awarded £7.3M Grant for Waste-to-Ethanol Plant in UK

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million) construction costs for the first commercial plant in Europe using its waste-to-ethanol BioEnergy Process Technology. million gallons US) of carbon-neutral road transport fuel and generate more than 3MW of electricity for export from over 100,000 tonnes per year of biodegradable household and commercial waste.

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Renault Trucks’ Optifuel Lab 2 lab vehicle integrates technologies for more efficient big rigs; road test results coming in 2015

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These figures will be announced during the first quarter of 2015. We therefore electrically powered several of the vehicle’s auxiliary items of equipment such as the air-conditioning, water pump, fuel pump and the steering pump. The more energy there is available at low cost, the more it will be used. Waste heat recovery.

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California Energy Commission awards more than $35M for green transportation in California

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This set of awards supports a diversity of alternative fuel and vehicle types, including biodiesel production, natural gas vehicle technologies and incentives, hybrid and plug-in vehicles, and E85 fueling stations. million as a share of the cost to install 101 new E85 (ethanol) fueling facilities at existing gas fueling stations statewide.

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NEC, NEC TOKIN and Tohoku University develop spin-Seebeck thermoelectric device w/ 10x better conversion efficiency

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NEC Corporation, NEC TOKIN Corporation and TOHOKU UNIVERSITY have jointly created a thermoelectric (TE) device using the spin Seebeck effect (SSE) with conversion efficiency 10 times higher than a test module that was produced based on a multi-layered SSE technology published by the Tohoku University group in 2015.

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Oak Ridge/Drexel team produces supercapacitor electrodes from scrap tires

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The first synthesized highly porous carbon (1625 m 2  g −1 ) using waste tires as the precursor. Those tires will eventually need to be discarded, and our supercapacitor applications can consume several tons of this waste. They then washed the rubber and put it into a tubular furnace under a flowing nitrogen gas atmosphere.

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Delivery of renewable isooctane to Audi tips interesting potential non-biomass pathway for biogasoline; “e-benzin” as solar fuel

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LanzaTech, founded in 2005, has developed a novel gas-liquid fermentation process that produces fuels and chemicals from gas resources and is the first company to successfully demonstrate production of fuel-grade ethanol from steel mill gases. Earlier post.). Earlier post.). Earlier post.). Ng, and Garry L.

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