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Review of low-temperature plasma nitrogen fixation technology

机译:低温血浆氮固定技术的评论

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摘要

Abstract Nitrogen fixation is essential for all forms of life, as nitrogen is required to biosynthesize fundamental building blocks of creatures, plants, and other life forms. As the main method of artificial nitrogen fixation, Haber–Bosch process (ammonia synthesis) has been supporting the agriculture and chemical industries since the 1910s. However, the disadvantages inherent to the Haber–Bosch process, such as high energy consumption and high emissions, cannot be ignored. Therefore, developing a green nitrogen fixation process has always been a research hotspot. Among the various technologies, plasma-assisted nitrogen fixation technology is very promising due to its small scale, mild reaction conditions, and flexible parameters. In the present work, the basic principles of plasma nitrogen fixation technology and its associated research progress are reviewed. The production efficiency of various plasmas is summarized and compared. Eventually, the prospect of nitrogen fixation using low-temperature plasma in the future was proposed.
机译:抽象的氮固定对于各种形式的生命都是必不可少的,因为氮是生物合成的基本构建基础的生物,植物和其他生命形式的基础。作为人工氮固定的主要方法,Haber -Bosch工艺(氨合成)自1910年代以来一直支持农业和化学工业。但是,Haber -Bosch过程固有的缺点,例如高能消耗和高排放,不可忽视。因此,开发绿色的氮固定过程一直是研究热点。在各种技术中,血浆辅助的氮固定技术非常有前途,因为其尺度很小,反应条件和柔性参数。在目前的工作中,审查了血浆氮固定技术及其相关研究进度的基本原理。总结和比较各种等离子体的生产效率。最终,提出了将来使用低温等离子体固定氮的前景。

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