随着社会发展进程加快,工业化程度升高,环境污染问题日益突出,农业污水,工业废水,城镇居民日常用水污水净化等问题亟待解决。本文介绍了等离子体及的英语翻译

随着社会发展进程加快,工业化程度升高,环境污染问题日益突出,农业污水,

随着社会发展进程加快,工业化程度升高,环境污染问题日益突出,农业污水,工业废水,城镇居民日常用水污水净化等问题亟待解决。本文介绍了等离子体及等离子体在环境方面的应用。包括对等离子体产生机理做了解释,以及等离子体如何作用于有机污染物的降解。目前在低温等离子体水处理领域,其传质问题所导致的能量利用率低、能耗高是该技术的应用瓶颈。本文通过优化低温等离子体系统操作条件,分别从增强传质效率,联合其他前沿氧化技术等方面,提高低温等离子体技术降解抗菌活性物质的效能,并探讨了实际降解抗菌活性物质的效果,得出以下主要结论:
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目标语言: -
结果 (英语) 1: [复制]
复制成功!
With the acceleration of social development, the degree of industrialization has increased, environmental pollution problems have become increasingly prominent, and the purification of agricultural sewage, industrial wastewater, and urban residents’ daily water and sewage needs to be solved urgently. This article introduces the application of plasma and plasma in the environment. Including the explanation of the plasma generation mechanism and how the plasma acts on the degradation of organic pollutants. At present, in the field of low-temperature plasma water treatment, the low energy utilization rate and high energy consumption caused by the mass transfer problem are the bottleneck of the application of this technology. In this paper, by optimizing the operating conditions of the low-temperature plasma system, enhancing the mass transfer efficiency and combining with other cutting-edge oxidation technologies, improving the effectiveness of low-temperature plasma technology in degrading antibacterial active substances, and discussing the actual effect of degrading antibacterial active substances, it is concluded that The main conclusions are as follows:
正在翻译中..
结果 (英语) 2:[复制]
复制成功!
With the acceleration of social development, the degree of industrialization, environmental pollution problems are becoming more and more prominent, agricultural sewage, industrial wastewater, urban residents daily water sewage purification and other issues need to be solved. This paper introduces the application of plasma and plasma in the environment. This includes explaining the mechanism of plasma production and how plasma acts on the degradation of organic pollutants. At present, in the field of low temperature plasma water treatment, the low energy utilization rate and high energy consumption caused by its mass transfer problem are the bottleneck of the application of this technology. By optimizing the operating conditions of low-temperature plasma system, this paper improves the effectiveness of low-temperature plasma technology in degrading antibacterial active substances from the aspects of enhancing mass transfer efficiency and combining other cutting-edge oxidation technologies, and discusses the effect of actual degradation of antibacterial active substances, and draws the following main conclusions:
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
With the acceleration of social development and the increase of industrialization, the problem of environmental pollution has become increasingly prominent. The problems of agricultural wastewater, industrial wastewater, urban residents' daily water and sewage purification need to be solved. This paper introduces plasma and its application in environment. The mechanism of plasma generation and how plasma acts on the degradation of organic pollutants are explained. At present, in the field of low-temperature plasma water treatment, low energy utilization and high energy consumption caused by its mass transfer problem are the application bottlenecks of this technology. In this paper, by optimizing the operating conditions of low-temperature plasma system, the efficiency of low-temperature plasma technology in degradation of antibacterial active substances was improved from enhancing mass transfer efficiency and combining with other advanced oxidation technologies, and the actual effect of degradation of antibacterial active substances was discussed<br>
正在翻译中..
 
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