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ARPA-E announces $11M for innovations in energy-water processing and agricultural sensing technologies; fourth, fifth OPEN+ cohorts

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The US Department of Energy’s Advanced Research Projects Agency-Energy (ARPA-E) announced $11 million in funding for 7 projects in the fourth and fifth cohorts of the agency’s OPEN+ program: Energy-Water Technologies and Sensors for Bioenergy and Agriculture. Energy-Water Technologies cohort.

Water 170
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Element 1, CO-WIN road testing medium-duty fuel cell truck with onboard methanol-based hydrogen generation

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Extended road testing of the vehicle is underway in Asia and represents a significant step towards the commercialization of e1’s onboard hydrogen generation technology. The M-Series units are methanol reformers that use water plus methanol to make hydrogen.

Hydrogen 418
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DOE awards $97M to 33 bioenergy research and development projects

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The US Department of Energy (DOE) announced more than $97 million in funding for 33 projects that will support high-impact technology research and development to accelerate the bioeconomy. Scalable CO 2 electrocatalysis technologies. Scalable CO 2 electrocatalysis technologies. Oregon State University. Project title.

Waste 186
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Velocys sells its second commercial license for FT renewable diesel and jet technology to Red Rock Biofuels

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Velocys plc, a developer of microchannel Fischer-Tropsch (FT) biorefineries, has received a “notice to proceed” action to commence manufacturing the FT reactors and catalyst for the Red Rock Biofuels LLC ( RRB ) biorefinery that will be located in Lakeview, Oregon. Velocys’ role will be as a licensor for its technology to the project.

Renewable 170
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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Made from widely available domestic feedstocks and advanced refining technologies, energy-dense biofuels provide a pathway for low-carbon fuels that can lower greenhouse gas emissions throughout the transportation sector and accelerate the bioeconomy. Award amounts range from $500,000 to $80 million, with most receiving at least $2 million.

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U Oregon team advances effectiveness of catalytic water dissociation in bipolar membranes

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Researchers at the University of Oregon have advanced the effectiveness of the catalytic water dissociation reaction in bipolar membranes. The technology behind bipolar membranes, which are layered ion-exchange polymers sandwiching a water dissociation catalyst layer, emerged in the 1950s. —Oener et al.

Oregon 284
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USDA provides $91M loan guarantee to Cool Planet for biogasoline blendstock plant; biomass pyrolysis and catalytic conversion

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Cool Planet’s patented technology comprises three main components: Biomass Pyrolysis: Hemi-cellulosic or lignocellulosic biomass is processed through a mechanical biomass fractionating system that uses pressure and heat to create streams of useful hydrocarbon components (bio-oil or pyrolysis oil). Depending on the temperature (300 ?C