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Is Hydrogen The Future Of Nuclear Energy?

机译:氢是核能的未来吗?

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The traditionally held belief is that the future of nuclear energy is electricity production. However, another possible future exists: nuclear energy used primarily for the production of hydrogen. The hydrogen, in turn, would be used to meet our demands for transport fuels (including liquid fuels), materials such as steel and fertilizer, and peak-load electricity production. Hydrogen would become the replacement for fossil fuels in these applications that consume more than half the world's energy. Such a future would follow from several factors: (a) concerns about climatic change that limit the use of fossil fuels, (b) the fundamental technological differences between hydrogen and electricity that may preferentially couple different primary energy sources with either hydrogen or electricity, and (c) the potential for other technologies to competitively produce electricity but not hydrogen.rnElectricity (movement of electrons) is not fundamentally a large-scale centralized technology that requires centralized methods of production, distribution, or use. In contrast, hydrogen (movement of atoms) is intrinsically a large-scale centralized technology. The large-scale centralized characteristics of nuclear energy as a primary energy source, hydrogen production systems, and hydrogen storage systems naturally couple these technologies. This connection suggests that serious consideration be given to hydrogen as the ultimate product of nuclear energy and that nuclear systems be designed explicitly for hydrogen production.
机译:传统上认为,核能的未来是电力生产。但是,另一个可能的未来存在:主要用于生产氢的核能。反过来,氢气将用于满足我们对运输燃料(包括液体燃料),钢铁和化肥等材料以及高峰负荷电力生产的需求。在这些消耗世界一半以上能源的应用中,氢将成为化石燃料的替代品。这样的未来将取决于几个因素:(a)对气候变化的担忧,限制了化石燃料的使用;(b)氢和电之间的根本技术差异可能会优先将不同的主要能源与氢或电耦合,以及(c)其他技术有潜力竞争性地发电但不能产生氢。电(电子运动)从根本上说不是大规模的集中技术,需要集中的生产,分配或使用方法。相反,氢(原子的运动)本质上是大规模的集中化技术。核能作为主要能源的大规模集中特征,制氢系统和储氢系统自然将这些技术结合在一起。这种联系表明,应认真考虑将氢作为核能的最终产物,并明确设计用于生产氢的核系统。

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