Remove 2015 Remove Commercial Remove Hydrogen Remove Sodium
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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

Green Car Congress

The US Department of Energy (DOE) announced more than $24 million in funding for 77 projects supported by the Office of Technology Transitions (OTT) Technology Commercialization Fund (TCF). Commercializing 3D Printable Feedstocks for the Advanced Manufacturing of Energy Products, $300,000 MilliporeSigma, St. Louis , Mo. Redmond, Wash.

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NSF to award $13M for fundamental engineering research on production of electricity and fuels

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Advanced systems such as lithium-air, sodium-ion, as well as lithium-ion electrochemical energy storage are appropriate. Work on commercially available systems such as lead-acid and nickel-metal hydride batteries will not be considered by this program. Closing date for applications is 20 October 2015.

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Successful performance test of natural Albany graphite versus synthetic graphite in a Ballard fuel cell stack; potential cost reduction

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Zenyatta natural graphite material was prototyped, tested and compared for key mechanical and electrical properties against Ballard’s baseline synthetic graphite in a commercial product platform. treatment using sodium hydroxide. A Phase 2 testing program by Ballard was initiated immediately afterward and announced in August of 2015.

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US DOE Issues Request for Information on Hydrogen and Fuel Cell Market Development; Reports to Congress on Program

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The US Department of Energy (DOE) Hydrogen Program has issued a Request for Information (RFI) on potential early markets and deployment opportunities for hydrogen and fuel cells. DOE is seeking to facilitate the market penetration of hydrogen and fuel cell products through higher volume purchases (e.g., Market development RFI.

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Ultrahigh-capacity anodes derived from natural silk for Li-ion batteries; other energy storage applications

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Currently, carbon is recognized as the leading electrode material for anodes of commercial lithium-ion batteries (LIBs) and electrochemical supercapacitors due to its low cost, high electrical conductivity, good chemical stability, environmental friendliness, and long cycling life. (a) charge–discharge curves at 0.1 Credit: ACS, Hou et al.

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Strong support for EV ambitions | Autocar Professional

Baua Electric

Boon for automotive industry The PLI scheme for the automotive industry in India is designed to drive high-tech green manufacturing, specifically targeting Advanced Technology Vehicles (ATVs) such as electric and hydrogen fuel cell vehicles. It incentivises OEMs to ramp up production and adoption of these environmentally friendly vehicles.

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MIT and Moscow State collaborating on advanced batteries, metal-air batteries and reversible fuel/electrolysis cells

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Other work focuses on sodium as an earth-abundant alternative to lithium, but while it could lower cost, sodium ions also carry just a single charge. One way is to generate hydrogen by splitting water and storing the hydrogen, as in the power-to-gas schemes under examination (e.g., Chiang Yet-Ming (2015).

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