面向应用的非热等离子体在化学反应工程中的研究进展

Yu Miao , Alexandre Yokochi , Goran Jovanovic , Suping Zhang , Annette von Jouanne
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引用次数: 4

摘要

非热等离子体作为化学反应工程中的一种工具已被研究多年。在非热等离子体中,电子的温度远远超过其他粒子,这使得它具有很高的效率。非热等离子体产生的反应环境除了对挥发性有机化合物(VOCs)的破坏已经得到了充分的研究外,还适合激活许多重要的气相化学反应,如甲烷偶联、二氧化碳还原、氨合成、固氮,以及一些液相化学反应,如污染水的处理。材料合成是非热等离子体的另一个目标领域。等离子体在微尺度上具有几个增强的特性,使其成为等离子体化学处理的更有前途的工具。本文综述了不同类型的非热等离子体及其在常用化学反应中的表现。本文还讨论了在微尺度上产生非热等离子体的优势,这些等离子体具有狭窄的空间、缩短的时间尺度和微/纳米结构电极。
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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Application-oriented non-thermal plasma in chemical reaction engineering: A review

Non-thermal plasma as a tool in chemical reaction engineering has been studied for many years. The temperature of electrons in non-thermal plasma far exceeds other particles, which leads to its high efficiency. Besides the well-studied destruction of volatile organic compounds (VOCs), the reaction environment generated by non-thermal plasma is also suitable for the activation of many significant gas-phase chemical reactions, e.g., as methane coupling, reduction of carbon dioxide, ammonia synthesis, nitrogen fixation, as well as some liquid phase chemical reactions such as the treatment of contaminated water. Material synthesis is another target field of non-thermal plasma. Plasma in micro scale with several enhanced properties makes it an even more promising tool for plasma-chemical processing. This work summarizes different types of non-thermal plasmas and their performance in commonly studied chemical reactions. The advantages gained by generating non-thermal plasma in micro scale with constricted spaces, reduced timescales, and micro-/nano-structured electrodes are also discussed.

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