Progress and challenges in energy storage and utilization via ammonia

Q4 Materials Science
Chongqi Chen, Yanliang Zhou, Huihuang Fang, Xiaobo Peng, Lilong Jiang
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引用次数: 0

Abstract

Abstract Ammonia is a premium energy carrier with high content of hydrogen. However, energy storage and utilization via ammonia still confront multiple challenges. Here, we review recent progress and discuss challenges for the key steps of energy storage and utilization via ammonia (including hydrogen production, ammonia synthesis and ammonia utilization). In hydrogen production, we focus on important processes and catalytic designs for conversion of carbon feedstocks and water into hydrogen. To reveal crucial challenges of ammonia synthesis, catalytic designs and mechanisms are summarized and analyzed, in thermocatalytic synthesis, electrocatalytic synthesis and photocatalytic synthesis of ammonia. Further, in ammonia utilization, important processes and catalytic designs are outlined for ammonia decomposition, ammonia fuel cells and ammonia combustion. The goal of this review is to stimulate development of low-cost and eco-friendly ways for energy storage and utilization via ammonia.
氨储能与利用的进展与挑战
摘要氨是含氢量高的优质能量载体。然而,利用氨进行能量储存和利用仍然面临着多重挑战。在此,我们回顾了近年来的进展,并讨论了氨储能和利用的关键步骤(包括制氢、氨合成和氨利用)面临的挑战。在制氢方面,我们专注于将碳原料和水转化为氢的重要工艺和催化设计。为了揭示氨合成的关键挑战,总结和分析了热催化合成、电催化合成和光催化合成氨的催化设计和机理。此外,在氨利用方面,概述了氨分解、氨燃料电池和氨燃烧的重要工艺和催化设计。本文综述的目的是促进低成本和生态友好的氨储能和利用方法的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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