用于二氧化碳转化的微波等离子体装置:微型综述

Huacheng Zhu , Yuqiang Huang , Shumeng Yin , Wencong Zhang
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引用次数: 0

摘要

全球变暖是 21 世纪最严峻的挑战之一,会对环境造成严重破坏。化石燃料的开采和燃烧释放出大量温室气体,从而导致气候变化。为应对这一紧迫问题,基于等离子体的二氧化碳转化技术已成为一个突出的解决方案,并得到广泛探索。在各种等离子体技术中,微波等离子体装置因其分解二氧化碳、促进甲烷干转化和逆向水煤气转化的卓越能力而备受关注。这些装置以其高度电离和产生非平衡等离子体而闻名,是处理温室气体的清洁高效方法。然而,研究人员在选择合适的微波等离子体反应器时往往面临挑战。因此,本文的主要目的是为微波等离子体装置提供指导。为此,本文根据微波运行机制对实验配置进行了说明,并根据运行原理对微波等离子体源进行了分类。此外,我们还在分析范围内讨论了具体的实验操作,为该领域的研究人员提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave plasma setups for CO2 conversion: A mini-review

Global warming poses one of the most critical challenges of the 21st century, leading to significant environmental damage. The extraction and combustion of fossil fuels release substantial amounts of greenhouse gases, thereby contributing to climate change. In response to this pressing issue, plasma-based conversion of carbon dioxide has emerged as a prominent and widely explored solution. Among the various plasma technologies, microwave plasma setups have garnered considerable attention due to their exceptional ability to decompose carbon dioxide, facilitate the dry reforming of methane and reverse water gas shift. These setups are renowned for their high degree of ionization and generation of non-equilibrium plasma, making them a clean and highly efficient method for treating greenhouse gases. However, researchers often face challenges in selecting the appropriate microwave plasma reactors. Thus, the primary objective of this paper is to provide guidance on microwave plasma setups. It is achieved by illustrating experimental configurations based on the microwave operating mechanism and presenting a classification of microwave plasma sources according to their operating principles. Moreover, specific experimental operations are discussed within the scope of our analysis, offering valuable insights to researchers in this field.

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