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US DOE Awards $37 Million for Marine and Hydrokinetic Energy Technology Development

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The goal is to develop an optimal generator for current energy conversion. Boston, Massachusetts) will develop a cost-effective, high efficiency, power take-off system for a wave energy converter, a mechanism to convert water’s mechanical energy into usable electricity. DOE Funding: $160,000. Total Project Value: $192,000.

Mariner 210
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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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Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. 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 per gallon. Harvard Medical School-Wyss Institute. of Georgia).

Carbon 249
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ARPA-E announces $36M for high-temperature materials projects

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Durable and affordable higher-temperature heat exchangers could make energy conversion much more efficient, which in turn could reduce fuel consumption, system footprint, capital and operational cost, and emissions. Missouri University of Science and Technology. The Ohio State University.

Low Cost 207
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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. University of Missouri, Lehigh University, and Evapco). ARID AWARDS. Lead organization.

Fusion 150
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DOE reports progress on development of hydrogen storage technologies

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For the near-term, the focus is on improving performance and lowering the cost of high-pressure compressed hydrogen storage systems. Related to this, DOE seeks by 2020 to develop novel precursors and conversion processes capable of reducing the high-volume cost of high-strength carbon fiber by 25% from $13 per pound to ~$9 per pound.

Hydrogen 225