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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. million) grant from the Regional Development Agency One North East and the Department for Energy and Climate Change. Click to enlarge. Earlier post.). million (US$5.9 million (US$3.7 —Peter Williams, CEO of INEOS Bio. This is subsequently blended into gasoline.

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SK invests in Fulcrum BioEnergy to accelerate production of low-carbon fuel from waste

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the strategic investment arm of South Korea’s SK Group, was part of a $50-million investment in Fulcrum BioEnergy, a US-based waste-to-fuels company. Fulcrum produce biofuel on a commercial scale by chemically converting municipal solid waste (MSW) into transportation fuels.

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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. Following the successful completion of a detailed feasibility study by the company, the UK DECC (Department for Energy and Climate Change) has approved funding of £4.5 million (US$10.8 Earlier post.).

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Report finds says “negative emissions technologies” need to play a large role in mitigating climate change

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To achieve goals for climate and economic growth, “negative emissions technologies” (NETs) that remove and sequester carbon dioxide from the air will need to play a significant role in mitigating climate change, according to a new report from the National Academies of Sciences, Engineering, and Medicine.

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NREL releases comprehensive vision for deep decarbonization of transportation

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It is a strategy rooted in cross-cutting research and engineering to enable industry stakeholders, communities, government agencies, and early adopters to meet their climate goals. In NREL’s bioenergy program, for example, we have chemists studying the fundamental chemistry of converting biomass and waste materials into fuel.

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Study suggests that decarbonizing US transport sector by converting waste CO2 to fuels would require economical air-capture of CO2

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Kreutz used two examples of CCTF systems in his analysis: biodiesel from microalgae and Sandia National Laboratory’s S2P process (an effort to utilize concentrated solar energy to convert waste CO 2 into synthetic fuels, earlier post ). Kreutz used what he called a bifurcated climate regime—i.e., Alternative CCR [CO 2.

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Berkeley Lab working with Alphabet Energy to develop a low-cost thermoelectric system

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With a $2-million grant from the California Energy Commission (CEC), Berkeley Lab is partnering with Alphabet Energy to create a cost-effective thermoelectric waste heat recovery system to reduce both energy use in the industrial sector and electricity-related carbon emissions.

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