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All-in-one solar-powered tower makes carbon-neutral kerosene in the field at pilot-scale

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Researchers in Europe led by a team from ETH Zurich have designed a fuel production system that uses water, CO 2 , and sunlight to produce aviation fuel. We are the first to demonstrate the entire thermochemical process chain from water and CO 2 to kerosene in a fully-integrated solar tower system. Zoller et al. Zoller et al.

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University of Utah engineers develop fast method to convert algae to biocrude

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Researchers at the University of have developed an unusually rapid method to deliver cost-effective algal biocrude in large quantities using a specially-designed jet mixer. bacteria, fungi, and algae) may be grown on non-arable land and with saline water, wastewater or/and produced water from mineral and petroleum extraction.

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MIT researchers develop oxygen permeable membrane that converts CO2 to CO

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MIT researchers have developed a new system that could potentially be used for converting power plant emissions of carbon dioxide into carbon monoxide, and thence into useful fuels for cars, trucks, and planes, as well as into chemical feedstocks for a wide variety of products. 2017), H 2 -assisted CO 2 thermochemical reduction on La 0.9

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LanzaTech collaborating with Swayana to convert waste gases from ferroalloy production to ethanol

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LanzaTech’s first commercial facility will be online at the end of 2017 in China, producing fuel-grade ethanol from captured steelmaking off-gas. The energy produced is assumed to be used internally at the site and the carbon content of the CO subsequently converted to CO 2 in-plant.

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Pilot test result of D3MAX cellulosic ethanol technology better than expected

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Testing of the patented D3MAX corn fiber-to-ethanol process and technology is underway with testing to be complete by June of 2017. Because the pilot test results have been so positive to date, D3MAX plans to begin designing the first commercial scale D3MAX plant this summer with construction expected to begin by Fall 2017.

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NREL shows graded catalytic-protective layer boosts longevity of high-efficiency photocathodes for renewable hydrogen

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Researchers at the US Department of Energy’s National Renewable Energy Laboratory (NREL) have developed a method which boosts the longevity of high-efficiency photocathodes in photoelectrochemical water-splitting devices. A PEC cell absorbs sunlight and converts that energy into hydrogen and oxygen by splitting water molecules.

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Argonne releases GREET 2020

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Users can evaluate the impacts on energy use, water consumption, and emissions of e-fuel production pathways using different hydrogen (H 2 ) and electricity sources. Blended with a petroleum gasoline blendstock, these bio-blendstocks are designed to improve engine efficiency for light-duty, boosted-spark ignition (BSI) engines.

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