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Harvard team demonstrates new metal-free organic–inorganic aqueous flow battery; potential breakthrough for low-cost grid-scale storage

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The technology could fundamentally transform the way electricity is stored on the grid, making power from renewable energy sources such as wind and sun far more economical and reliable. Consequently they maintain peak discharge power for less than an hour before they are drained, and are therefore ill-suited to store intermittent renewables.

Low Cost 374
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DOE awards $20M to 10 hydrogen production and delivery technologies projects

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of Danbury, Connecticut will receive $900,000 to develop a novel hybrid system for low-cost, low greenhouse gas hydrogen production. Wiretough Cylinders LLC of Bristol, Virginia will receive $2 million to demonstrate a low cost high pressure hydrogen storage vessel using a steel wire overwrap.

Hydrogen 253
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DOE to award $15.8M to 30 hydrogen and fuel cell technologies projects

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million for 30 new projects aimed at discovery and development of novel, low-cost materials necessary for hydrogen production and storage and for fuel cells onboard light-duty vehicles. Precursor Development for Low-Cost, High-Strength Carbon Fiber. University of Connecticut. National Renewable Energy Laboratory.

Hydrogen 170
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Renewable Energy Generation: Change is not a destination, just as hope is not a strategy, a lesson exported from Detroit

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On December 16, 2010 the US DOE Energy Information Agency (EIA) published a report projecting that renewable energy will still only constitute 12 percent of the USA’s energy sources by 2035. In France, renewable energy consumption will be 20 percent by 2020. EIA projections of renewables penetration. in Connecticut.

Renewable 220
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Study shows a much cheaper catalyst can generate hydrogen in a commercial electrolyzer

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Researchers at the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University have shown for the first time that a low-cost, non-precious metal cobalt phosphide (CoP) catalyst catalyst can split water and generate hydrogen gas for hours on end in the harsh environment of a commercial device.

Hydrogen 218
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DOE to invest $30M to further H2 and fuel cell technology as industry continues strong growth

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Fiscal year 2017 funding will also be targeted at the development of low-cost, high-strength precursors for carbon fibers that can be used in vehicular hydrogen storage vessels. —Acting Assistant Secretary for Energy Efficiency and Renewable Energy David Friedman.

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DOE selects 28 hydrogen and fuel cell R&D projects for $38M in funding

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Selections for this investment focus on key early-stage technical challenges related to non-precious metal catalysts; fuel cell membranes; reversible fuel cells; and electrolyzers to produce hydrogen, as well as innovative concepts to improve efficiency and lower costs of hydrogen vehicle refueling infrastructure. Skyre, Inc.: Giner, ELX Inc.:

Hydrogen 186