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Electrochemical Ammonia Synthesis and Ammonia Fuel Cells

机译:电化学氨合成和氨燃料电池

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摘要

Ammonia is a promising platform molecule for the future renewable energy infrastructure owing to its high energy density (when liquefied) and carbon-free nature. In particular, the interconversion between the chemical and electrical energies leveraging the nitrogen cycle could be an effective approach in mitigating the intermittency of renewable electricity production. However, efficient methods to store and release energy into and from ammonia, respectively, are still under development. Here, the latest developments in electrochemical ammonia synthesis and ammonia fuel cells are presented, and perspectives in the technical challenges and possible remedies are outlined. N-2 electrolysis, plasma-enabled N-2 activation, and electro-thermochemical looping are three potential approaches for electrochemical ammonia synthesis; however, achieving high selectivity and energy efficiency remains challenging. Direct ammonia fuel cells are suitable for a broad range of mobile and transportation applications but are limited by the lack of active catalysts for ammonia oxidation.
机译:氨由于其高能量密度(液化)和无碳性质,因此是未来可再生能源基础设施的有希望的平台分子。特别地,利用氮循环的化学能和电能之间的相互转换可能是减轻可再生电力生产的间歇性的有效方法。然而,仍在开发分别向氨和从氨释放能量的有效方法。在此,将介绍电化学氨合成和氨燃料电池的最新发展,并概述技术挑战的观点和可能的补救措施。 N-2电解,启用等离子体的N-2活化和电化学热循环是电化学合成氨的三种潜在方法。然而,实现高选择性和能源效率仍然具有挑战性。直接氨燃料电池适用于广泛的移动和运输应用,但由于缺乏用于氨氧化的活性催化剂而受到限制。

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