结束语:可持续的氮活化——我们做到了吗?__

IF 3.3 3区 化学 Q2 CHEMISTRY, PHYSICAL
Douglas R. MacFarlane, Alexandr N. Simonov, Thi Mung Vu, Sam Johnston and Luis Miguel Azofra
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引用次数: 0

摘要

二氮的活化是产生含氮化合物(包括氨和硝酸盐)反应的基本步骤,在化学中具有基石作用。法拉第讨论汇集了来自不同领域的研究,这些研究可以可持续地实现,旨在建立可以刺激进一步进步的方法之间的联系。在本文中,我们将概述这些不同的方法及其共性。我们探讨了实验方面的问题,包括在某些领域增加氮压力的积极作用,以及在什么情况下可能需要15N2实验,什么情况下可能不需要15N2实验。解构氮还原反应,我们试图提供一个能量尺度的共同框架,在这个框架内,所有不同的方法及其组成部分都可以被理解。在可持续性方面,我们认为,尽管绿色h2供给的Haber-Bosch工艺产生的绿色氨似乎符合要求,但在许多现实环境中,迫切需要其他可持续的方法来实现这一重要反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Concluding remarks: Sustainable nitrogen activation – are we there yet?†

Concluding remarks: Sustainable nitrogen activation – are we there yet?†

The activation of dinitrogen as a fundamental step in reactions to produce nitrogen compounds, including ammonia and nitrates, has a cornerstone role in chemistry. Bringing together research from disparate fields where this can be achieved sustainably, this Faraday Discussion seeks to build connections between approaches that can stimulate further advances. In this paper we set out to provide an overview of these different approaches and their commonalities. We explore experimental aspects including the positive role of increasing nitrogen pressure in some fields, as well as offering perspectives on when 15N2 experiments might, and might not, be necessary. Deconstructing the nitrogen reduction reaction, we attempt to provide a common framework of energetic scales within which all of the different approaches and their components can be understood. On sustainability, we argue that although green ammonia produced from a green-H2-fed Haber–Bosch process seems to fit the bill, there remain many real-world contexts in which other, sustainable, approaches to this vital reaction are urgently needed.

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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
0.00%
发文量
259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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