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    • 6. 发明申请
    • Renewable energy operated hydrogen reforming system
    • 可再生能源氢重整系统
    • US20060207178A1
    • 2006-09-21
    • US10544737
    • 2004-02-06
    • Michael Hsu
    • Michael Hsu
    • C10J3/68
    • B01J8/062B01J19/249B01J2208/00504B01J2208/022B01J2219/2481C01B3/342C01B3/38C01B2203/0233C01B2203/066C01B2203/0861C01B2203/1058C01B2203/1241C01B2203/84C01B2203/86H01M8/04208H01M8/0618Y02E60/324Y02E70/20Y02P20/133Y02P30/30
    • An application applying mixed use of conventional hydrocarbon fuel with renewable energy sources for hydrogen production presents an optimal balance between economics and environmental benefits for any long-range implementations. A hydrogen production system incorporates the use of electricity from renewable sources in hydrogen reforming plants for various functions to achieve better environmental performance. The hydrogen production system includes the compression of hydrogen for high-pressure storage and an electrical heating supply for an endothermic reforming process of producing hydrogen from an input fuel. The compressed hydrogen, produced using renewable energy sources, also provides a means of stored mechanical energy, Another hydrogen production system utilizes a conventional chemical reforming process to provide leveled hydrogen generation together with electrolysis from the fluctuating renewable energy sources, which also provides low cost hydrogen generation, good environmental performance and commercial dependability.
    • 将常规碳氢化合物燃料与可再生能源混合使用的氢气生产的应用在任何长距离实施中都是经济效益和环境效益之间的最佳平衡。 氢气生产系统包括在氢气重整设备中使用来自可再生能源的电力,用于各种功能,以实现更好的环境性能。 氢气生产系统包括用于高压存储的氢气的压缩和用于从输入燃料产生氢气的吸热重整过程的电加热供应。 使用可再生能源生产的压缩氢也提供了储存的机械能的手段。另一个氢气生产系统利用常规的化学重整过程,提供平稳的氢气生成以及来自波动的可再生能源的电解,这也提供了低成本氢 一代,良好的环境绩效和商业可靠性。