氨合成的最新进展:从哈伯-博什工艺到外部气场驱动战略。

IF 6.6 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
ChemSusChem Pub Date : 2024-03-12 DOI:10.1002/cssc.202301775
Jiayang Li, Qingchuan Xiong, Dr. Xiaowei Mu, Prof. Lu Li
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引用次数: 0

摘要

氨作为一种重要的化学原料和潜在的氢能载体,其利用的关键步骤是需要高效合成。传统的哈伯-博什工艺以高能耗著称,这促使研究人员寻求在更温和的条件下合成氨。表面科学和表征技术的进步加深了我们对氨合成微观反应机制的理解。本文集中讨论气固相氨合成,首先探讨热催化合成的最新突破和改进。在此基础上,文章特别关注新兴的外部场驱动替代方法,如光催化、光热催化和低温等离子体催化策略。论文最后讨论了固氮技术的未来前景和目标。本综述旨在为克服传统氨合成中固有的热力学和动力学限制提供深刻见解,从而促进向 "绿色氨 "生产的转变,并显著减少能源足迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent Advances in Ammonia Synthesis: From Haber-Bosch Process to External Field Driven Strategies

Recent Advances in Ammonia Synthesis: From Haber-Bosch Process to External Field Driven Strategies

Ammonia, a pivotal chemical feedstock and a potential hydrogen energy carrier, demands efficient synthesis as a key step in its utilization. The traditional Haber-Bosch process, known for its high energy consumption, has spurred researchers to seek ammonia synthesis under milder conditions. Advances in surface science and characterization technologies have deepened our understanding of the microscopic reaction mechanisms of ammonia synthesis. This article concentrates on gas-solid phase ammonia synthesis, initially exploring the latest breakthroughs and improvements in thermal catalytic synthesis. Building on this, it especially focuses on emerging external field-driven alternatives, such as photocatalysis, photothermal catalysis, and low-temperature plasma catalysis strategies. The paper concludes by discussing the future prospects and objectives of nitrogen fixation technologies. This comprehensive review is intended to provide profound insights for overcoming the inherent thermodynamic and kinetic constraints in traditional ammonia synthesis, thereby fostering a shift towards “green ammonia” production and significantly reducing the energy footprint.

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来源期刊
ChemSusChem
ChemSusChem 化学-化学综合
CiteScore
15.80
自引率
4.80%
发文量
555
审稿时长
1.8 months
期刊介绍: ChemSusChem Impact Factor (2016): 7.226 Scope: Interdisciplinary journal Focuses on research at the interface of chemistry and sustainability Features the best research on sustainability and energy Areas Covered: Chemistry Materials Science Chemical Engineering Biotechnology
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