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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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Oregon State University (OSU) is developing a system for extracting clean irrigation water from hydraulic fracturing wastewater using low-grade solar or industrial waste heat. OSU’s technology would be modular, portable, scalable, and deployable at a fraction of the cost of existing treatment systems.

Water 170
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3 winners of DOE’s “America’s Next Top Energy Innovator” Challenge: hydrogen-assisted lean-burn engines, graphene for Li-air and -sulfur batteries, and titanium process

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IPAT , a startup company based in Nevada, Iowa, is using gas atomization technology developed at Ames Laboratory to make titanium powder with processes that are ten times more efficient than traditional powder-making methods—significantly lowering the cost of the powder to manufacturers.

Hydrogen 279
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ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

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This project will develop and optimize a novel, engineered microorganism that produces a biodiesel-equivalent fuel from renewable hydrogen and carbon dioxide, at costs of less than $2.50 The team anticipates at least a twofold productivity improvement over current levels and a cost that can be competitive with gasoline. per gallon.

Carbon 249
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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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LH CO 2 MENT Colorado Project. will demonstrate its low-cost ICE-31 solvent with enhanced stability technology on a flue gas slipstream at Los Medanos Energy Center, a commercially dispatched natural gas combined-cycle power plant in Pittsburg, CA. DOE Funding: $1,487,794; Non-DOE Funding: $371,949; Total: $1,859,742.

Carbon 236
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DOE awards $34M to 19 projects to advance clean hydrogen

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plans to develop a novel membrane system from Osmoses’ proprietary polymer composition that can produce enriched oxygen from air for integration into modular gasification systems for low-cost hydrogen production. The team intends to demonstrate high-purity (greater than 98% by volume, preferably above 99.5%

Hydrogen 150
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ARPA-E awarding $60M to 23 projects; dry cooling and fusion power

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The projects are funded through ARPA-E’s two newest programs, Advanced Research In Dry cooling (ARID) and Accelerating Low-cost Plasma Heating and Assembly (ALPHA), which both seek to develop low-cost technology solutions. Colorado State University. Advanced Research In Dry cooling (ARID): $30 Million.

Fusion 150
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ARPA-E awards $130M to 66 “OPEN 2012” transformational energy technology projects

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Conventional large-scale gasto-liquid reactors produce waste-heat, reducing the energy. Capturing this energy would reduce both waste. areas to convert otherwise wasted gas into usable chemicals that. Colorado State. Researchers from Colorado State University will develop a system. efficiency of the process.

2012 240