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HyperSolar reaches 1.25 V for water-splitting with its self-contained low-cost photoelectrochemical nanosystem

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volts (V) of water-splitting voltage with its novel low-cost electrolysis technology. The theoretical minimum voltage needed to split water molecules into hydrogen and oxygen is 1.23 Nanosystem for water electrolysis. HyperSolar, Inc. announced that it had reached 1.25 V (at 25 °C at pH 0). Click to enlarge.

Low Cost 246
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University of Tennessee to head $250M advanced composites manufacturing institute; Ford, Honda and Volkswagen members

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In the wind energy industry, advances in low-cost composite materials will help manufacturers build longer, lighter and stronger blades to create more energy. Dow Chemical Company; DowAksa; DuPont; ESI North America; Evonik Corporation; Faurecia US Holdings; Fives; Ford Motor Company; GE Water & Power; Graco Inc.; TPI Composites, Inc.;

Tennessee 150
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TdVib commercializing CMI technology for recycling rare earth elements from electronic waste

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Recently, TdVib LLC , a company based out of Boone, Iowa, signed a license agreement for the technology with Iowa State University Research Foundation, which handles patenting and technology transfer activities for Ames Laboratory. It’s a very efficient and robust process. —Ikenna Nlebedim.

Waste 199
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Exascale Computing Project (ECP) announces $39.8M in first-round application development awards

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Exascale Lattice Gauge Theory Opportunities and Requirements for Nuclear and High Energy Physics, Paul Mackenzie (FNAL) with BNL, TJNAF, Boston University, Columbia University, University of Utah, Indiana University, UIUC, Stony Brook, College of William & Mary.

Universal 150
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Departments of Energy and Interior award nearly $17M for advanced hydropower technologies

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By allowing utility operators to pump water up to a dam or impoundment during periods of low electricity demand and release water during times of peak electricity demand, pumped storage hydropower improves the reliability of electric grids and helps increase the use of variable renewable energy resources such as wind and solar power.

Energy 207
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ARPA-E Awards $151M to 37 Projects for Transformative Energy Research

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Water (1 project). Arizona State University, in partnership with Fluidic Energy Inc., Teaming with Ohio State University are PSRI, CONSOL Energy, Shell/CRI, and Babcock and Wilcox to accelerate this technology towards commercialization and deployment. Direct Solar Fuels (5 projects). Vehicle Technologies (5 projects).

Energy 231
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Study finds removing corn residue for biofuel production can decrease soil organic carbon and increase CO2 emissions; may miss mandated 60% GHG reduction

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Using corn crop residue to make ethanol and other biofuels reduces soil carbon and under some conditions can generate more greenhouse gases than gasoline, according to a major, multi-year study by a University of Nebraska-Lincoln team of researchers published in the journal Nature Climate Change. Changes in SOC. —Liska et al.

Carbon 220