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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. More than 2,000 fuel cell vehicles have been sold or leased in the US since 2015. Hydrogen Storage Materials Discovery. DOE share (FY17).

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Mercedes-Benz’ GLC F-CELL fuel-cell plug-in hybrid SUV coming in 2017

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Daimler will introduce a series-production fuel-cell plug-in hybrid—the Mercedes-Benz GLC F-CELL—in 2017. Furthermore, the cost of the technology has been slashed due largely to a 90% reduction in the amount of platinum used in the stack. The GLC has been rolling off the production line there since July 2015.

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NREL sets new world efficiency record for solar hydrogen production: 16.2%

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Scientists at the US Department of Energy’s (DOE) National Renewable Energy Laboratory (NREL) recaptured the record for highest efficiency in solar hydrogen production via a photoelectrochemical (PEC) water-splitting process. Other methods that use sunlight entail additional loss-generating steps. Young, Myles A. France, John A. 2017.28.

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

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The 2015 Fuel Cell Technologies Market Report shows that more than 60,000 fuel cells, totaling roughly 300 megawatts (MW), shipped worldwide in 2015. 2015 also saw the world’s first fuel cell vehicles for sale. The number of MW shipped grew by more than 65% compared to 2014.

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NREL shows graded catalytic-protective layer boosts longevity of high-efficiency photocathodes for renewable hydrogen

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Their works demonstrates the potential of utilizing a hybridized, heterogeneous surface layer as a cost-effective catalytic and protective interface for solar hydrogen production. Using a photoelectrochemical (PEC) device is a promising way to produce hydrogen. Jing Gu, Jeffery A. Aguiar, Suzanne Ferrere, K. Neale & John A.

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DOE to issue funding opportunity for R&D for hydrogen storage for vehicles, material handling and portable power

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The goal is to enable the widespread commercialization of hydrogen and fuel cell technologies and specifically to provide adequate hydrogen storage for onboard vehicle, material handling, and portable power applications that meet the DOE hydrogen storage targets. Topic Area 3: New Hydrogen Storage Materials Discovery.

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Ballard, Nisshinbo collaborate to offer first PEM fuel cell using non-precious-metal catalyst

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Ballard has successfully incorporated the Non Precious Metal Catalyst into a high performing catalyst layer under a Technology Solutions program and plans to launch a new 30-watt FCgen-1040 fuel cell stack product incorporating NPMC for commercial use in late-2017. CNW Group/Ballard Power Systems Inc.) Click to enlarge. Earlier post.).

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