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  2. Parker Hannifin - Wikipedia

    en.wikipedia.org/wiki/Parker_Hannifin

    Parker-Hannifin Corporation, originally Parker Appliance Company, usually referred to as just Parker, is an American corporation specializing in motion and control technologies. Its corporate headquarters are in Mayfield Heights, Ohio , in Greater Cleveland (with a Cleveland mailing address).

  3. Arthur L. Parker - Wikipedia

    en.wikipedia.org/wiki/Arthur_L._Parker

    Arthur LaRue Parker (November 16, 1885 – January 1, 1945) was an American businessman and inventor, known for founding Parker Hannifin Corporation (then known as Parker Appliance Company). Early life and education

  4. Hydrogen fuel cell power plant - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_fuel_cell_power_plant

    A hydrogen fuel cell power plant is a type of fuel cell power plant (or station) which uses a hydrogen fuel cell to generate electricity for the power grid.They are larger in scale than backup generators such as the Bloom Energy Server and can be up to 60% efficient in converting hydrogen to electricity.

  5. Parker-Hannifin's Unit Boosts UK Site, Launches SciLog Suite

    www.aol.com/news/parker-hannifins-unit-boosts-uk...

    Parker-Hannifin Corporation’s PH unit, Parker Bioscience Filtration, recently announced the opening of a new testing facility at Birtley, U.K. site. Notably, the move will complement the unit ...

  6. Yacht XV 1 - Wikipedia

    en.wikipedia.org/wiki/Yacht_XV_1

    XV/1 schematic. The technology allows a marine vessel to be fully self-sustaining, without the need for fossil fuels. It uses technologies well known in the marine environment, such as solar panels, wind turbines, reverse osmosis water-makers, marine batteries, and regenerative electric motors in conjunction with fuel cells and the electrolysis of water.

  7. Hydrogen production - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_production

    Efficiency of modern hydrogen generators is measured by energy consumed per standard volume of hydrogen (MJ/m 3), assuming standard temperature and pressure of the H 2. The lower the energy used by a generator, the higher would be its efficiency; a 100%-efficient electrolyser would consume 39.4 kilowatt-hours per kilogram (142 MJ/kg) of ...

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