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  2. Spark M. Matsunaga Hydrogen Research, Development, and ...

    en.wikipedia.org/wiki/Spark_M._Matsunaga...

    Spark M. Matsunaga Hydrogen Research, Development, and Demonstration Act of 1990 is a United States statute establishing a comprehensive five year management program for the domestic distribution, production, and utilization of the lighter than air and diatomic molecule known as hydrogen.

  3. United States hydrogen policy - Wikipedia

    en.wikipedia.org/wiki/United_States_Hydrogen_Policy

    The categories that projects must adhere to are as follows: (1) advancements in technologies, components, or systems related to hydrogen production, storage, distribution, utilization; (2) prototypes of hydrogen-powered vehicles or other hydrogen-based products that best meet or exceed objective performance criteria, such as the completion of a ...

  4. Hydrogen production - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_production

    Considering the industrial production of hydrogen, and using current best processes for water electrolysis (PEM or alkaline electrolysis) which have an effective electrical efficiency of 70–82%, [70] [71] [72] producing 1 kg of hydrogen (which has a specific energy of 143 MJ/kg or about 40 kWh/kg) requires 50–55 kWh of electricity.

  5. Hydrogen infrastructure - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_infrastructure

    Hydrogen pipeline transport is a transportation of hydrogen through a pipe as part of the hydrogen infrastructure. Hydrogen pipeline transport is used to connect the point of hydrogen production or delivery of hydrogen with the point of demand, pipeline transport costs are similar to CNG, [9] the technology is proven, [10] however most hydrogen is produced on the place of demand with every 50 ...

  6. High-pressure electrolysis - Wikipedia

    en.wikipedia.org/wiki/High-pressure_electrolysis

    High-pressure electrolysis is being investigated by the DOE for efficient production of hydrogen from water. The target total in 2005 is $4.75 per gge H 2 at an efficiency of 64%. [10] The total goal for the DOE in 2010 is $2.85 per gge H 2 at an efficiency of 75%. [11] As of 2005 the DOE provided a total of $1,563,882 worth of funding for ...

  7. Hydrogen technologies - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_technologies

    Hydrogen is a chemical widely used in various applications including ammonia production, oil refining and energy. [1] The most common methods for producing hydrogen on an industrial scale are: Steam reforming, oil reforming, coal gasification, water electrolysis. [2] Hydrogen is not a primary energy source, because it is not naturally occurring ...

  8. Photoelectrolysis of water - Wikipedia

    en.wikipedia.org/wiki/Photoelectrolysis_of_water

    Advantages: Utilizing sunlight, photoelectrolysis serves as a renewable method for hydrogen production, offering scalability and adaptability across different geographical conditions. Challenges: The primary hurdles include the still-developing efficiency of the process and the intermittent nature of solar energy, which can affect consistent ...

  9. Hydrogen economy - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_economy

    The concept of a society that uses hydrogen as the primary means of energy storage was theorized by geneticist J. B. S. Haldane in 1923. Anticipating the exhaustion of Britain's coal reserves for power generation, Haldane proposed a network of wind turbines to produce hydrogen and oxygen for long-term energy storage through electrolysis, to help address renewable power's variable output. [15]