生态友好型能量转换反应的描述:铁基氮电固定

Electron Pub Date : 2024-05-30 DOI:10.1002/elt2.40
Liyuan Xu, Zheng Zhu, Jingjing Duan, Sheng Chen
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引用次数: 0

摘要

氨是生产化肥和药品的重要原料,化肥和药品是国民经济中化学工业和农业的主要部门。传统的哈伯-博世法至今仍在工业中使用,以制造NH3,生产过程中排放大量的二氧化碳,这与目前实现碳中和的标准不符。氮还原反应(NRR)技术由于其环境友好、可持续发展以及能够在温和环境中发挥作用等优点,近年来引起了人们的广泛关注。然而,NRR仍处于早期发展阶段,面临着许多难题,包括反应动力学缓慢,氨收率和法拉第效率(FE)低,以及缺乏对整体固氮的有效研究。本文旨在促进铁基催化剂的产业化,综述了铁基催化剂的研究进展,包括单原子催化剂、有机骨架催化剂、金属氧化物催化剂和合金催化剂。最后,探讨了提高NH3产率和FE,改善反应动力学,建立可持续的整体固氮体系的策略。对铁基催化剂在其他领域的发展进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Account of eco-friendly energy conversion reaction: Iron-based nitrogen electrofixation

Account of eco-friendly energy conversion reaction: Iron-based nitrogen electrofixation

Ammonia is a crucial raw ingredient used in the manufacturing of fertilizers and pharmaceuticals, which are major sectors of the national economy in the chemical and agricultural industries. The conventional Haber–Bosch method is still in use in the industry today to manufacture NH3, and the production process emits a significant quantity of CO2, which does not match the current standards for the achievement of carbon neutrality. The nitrogen reduction reaction (NRR) technology has garnered a lot of attention lately because of its benefits, which include being environmentally friendly, sustainable, and able to function in mild environments. However, NRR is still in its early stages of development and confronts numerous difficult issues, including slow reaction kinetics, low ammonia yield rates and Faradaic efficiency (FE), and a dearth of effective research on nitrogen fixation as a whole. This paper aims to promote the industrialization of NRR, summarizing the progress of iron-based catalysts, including single atomic catalysts, organic frameworks, metal oxides the, and alloys. Eventually, this paper discusses the strategies for improving NH3 yield rates and FE, improving reaction kinetics, and building a sustainable overall nitrogen fixation system. The development of iron-based catalysts in other fields has also been prospected.

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