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DOE announces approximately $64M in funding for 18 projects to advance H2@Scale

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The projects will feature collaborations with EERE’s Advanced Manufacturing Office on manufacturing reliable and affordable electrolyzers and with EERE’s Vehicle Technologies Office on developing low-cost, high-strength carbon fiber for hydrogen storage tanks. Carbon Composite Optimization Reducing Tank Cost.

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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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ARPA-E’s first solicitation awarded $151 million to 37 projects aimed at transformational innovations in energy storage, biofuels, carbon capture, renewable power, building efficiency, vehicles, and other areas. Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. Earlier post.) Engineering E. per gallon.

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DOE awards nearly $55M to advance fuel efficient vehicle technologies in support of EV Everywhere and SuperTruck

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Eight projects are aimed at improvements including developing and demonstrating dual-fuel or dedicated natural gas engine technologies for high-efficiency medium and heavy-duty vehicles to reduce petroleum usage and developing advanced computational fluid dynamics models to accelerate the development of advanced engine technologies.

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DOE Selects 19 Projects to Monitor and Evaluate Geologic CO2 Storage

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The US Department of Energy (DOE) has selected 19 projects to enhance the capability to simulate, track, and evaluate the potential risks of carbon dioxide storage in geologic formations. million of non-Federal cost sharing. Schlumberger Carbon Services , Columbus, Ohio. The projects’ total value is approximately $35.8

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

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Missouri University of Science and Technology. Missouri S&T will combine a novel additive manufacturing technique, called ceramic on-demand extrusion, and ceramic fusion welding techniques to manufacture very high temperature heat exchangers for power cycles with intense heat sources. The Ohio State University.

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DOE reports progress on development of hydrogen storage technologies

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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. Reducing the cost of high-pressure compressed hydrogen. . $10/kWh ($333/kg H 2 stored ). kWh/kg system (7.5 kWh/kg system (7.5

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