等离子体技术在大气污染控制中的应用综述

Tb khr Pub Date : 2023-10-08 DOI:10.18502/tkj.v15i3.13782
Ordudari Z, Rismanchian M
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引用次数: 0

摘要

等离子体被认为是物质的第四种状态。非热等离子体因其操作简单、在常温下反应快、停留时间短等特点而受到广泛应用。本文将对等离子体技术在大气污染治理中的应用进行综述。 材料与方法:本研究使用Science Direct、Google Scholar、ISI、Scopus、Pubmed等搜索引擎。2016年至2022年,搜索的关键词包括等离子体、冷等离子体、热等离子体、空气污染控制和非热等离子体。& # x0D;结果:等离子体催化是提高过程中污染物降解和能源效率的有效工具。然而,必须考虑到一些限制因素,包括催化剂的成本、稳定催化剂可能需要的成本以及由此产生的二次污染。 结论:等离子体技术要实现商业化,还面临着成本提高和实际应用等问题。同时使用催化剂和等离子体技术是一个有用的工具,以增加污染物的破坏和能源效率的过程。介质阻挡放电等离子体与催化剂相结合的优点是不产生废水,不需要试剂。介质阻挡放电等离子体与催化剂相结合具有低能耗的优点,是一种极具吸引力的方法。今后的研究将朝着提高效率、提高速度和灵活性、降低成本和能耗、使基于冷等离子体的先进系统更加环保的方向发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of the application of plasma technology in air pollution control
Introduction: Plasma is considered the fourth state of matter. Non-thermal plasma is more popular due to its unique features such as easy operation, quick reaction at ambient temperature, and short residence time. In this study, the application of plasma technology in air pollution control will be reviewed. Materials and Method: In this study, Science Direct, Google Scholar, ISI, Scopus, and Pubmed search engines were used. The keywords searched included plasma, cold plasma, thermal plasma, air pollution control, and non-thermal plasma from 2016 to 2022. Results: Plasma catalysis is a useful tool for increasing pollutant degradation and energy efficiency in processes. Nevertheless, some limiting factors including the cost of catalysts, the possible cost required for their stabilization, and the resulting secondary pollution must be taken into account. Conclusion: To commercialize plasma technology, we are facing problems such as increasing the cost and applying the mentioned technology in the real environment. The simultaneous use of catalysts and plasma technology is a useful tool to increase the destruction of pollutants and energy efficiency in processes. No wastewater production and no need for reagents are advantages of the combination of dielectric barrier discharge plasma and catalyst. The combination of dielectric barrier discharge plasma and catalyst will be very attractive methods due to low energy consumption. It seems that the recent research will be in the direction of increasing efficiency, increasing speed, and flexibility, reducing the cost and energy consumption, and making the advanced systems based on cold plasma more environmentally friendly.
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