Department of Environmental Engineering, Chung Yuan Christian University, No. 200 Chung Pei Road, Chung-Li 32023, Taiwan, ROC.
Department of Environmental Engineering, Chung Yuan Christian University, No. 200 Chung Pei Road, Chung-Li 32023, Taiwan, ROC; Center for Environmental Risk Management, Chung Yuan Christian University, No. 200 Chung Pei Road, Chung-Li 32023, Taiwan, ROC.
J Hazard Mater. 2022 Feb 15;424(Pt A):127390. doi: 10.1016/j.jhazmat.2021.127390. Epub 2021 Sep 30.
The information of plasma technologies applications for environmental clean-up on treating and degrading metals, metalloids, dyes, biomass, antibiotics, pesticides, volatile organic compounds (VOCs), bacteria, virus and fungi is compiled and organized in the review article. Different reactor configurations of plasma technology have been applied for reactive species generation, responsible for the pollutants removal, hydrogen and methane production and microorganism inactivation. Therefore, in this review article, the reactive species from discharge plasma are presented here to provide the insight into the environmental applications. The combinations of plasma technology with flux agent and photocatalytic are also given in this review paper associated with the setup of the plasma system on the removal process of metals, VOCs, and microorganisms. Furthermore, the potential of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) inactivation via plasma technology is also described in this review paper. Detailed information of plasma parameter configuration is given to support the influence of the critical process in the plasma system to deal with contaminants.
本文综述了等离子体技术在处理和降解金属、类金属、染料、生物质、抗生素、农药、挥发性有机化合物(VOCs)、细菌、病毒和真菌等污染物方面的应用信息。不同的等离子体技术反应器结构被用于产生活性物质,这些活性物质负责污染物的去除、氢气和甲烷的生成以及微生物的失活。因此,在本文中,介绍了放电等离子体中的活性物质,以提供对环境应用的深入了解。本文还介绍了等离子体技术与流动剂和光催化的结合,以及与金属、VOCs 和微生物去除过程相关的等离子体系统的设置。此外,本文还描述了通过等离子体技术灭活严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)的潜力。本文给出了详细的等离子体参数配置信息,以支持等离子体系统中关键工艺对处理污染物的影响。