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Environmental plasma-catalysis for the energy-efficient treatment of volatile organic compounds

机译:环境等离子体催化对挥发性有机化合物进行节能处理

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摘要

Nonthermal plasma (NTP) coupled with catalysis is a promising technique for the abatement of dilute volatile organic compounds (VOCs), because it is operable under mild reaction conditions, i.e., low temperature and atmospheric pressure. This review addresses the mechanistic aspects of catalyst activation by NTP, such as the generation and fixation of reactive species, facilitation of redox cycles, photocatalysis, and local heating, to clarify the combined effects of plasma and catalysis. The plasma-catalytic removal of VOCs preferentially requires the catalyst to have a large specific surface area, high surface oxygen storage capacity, and to be highly reducible. The energy consumption and deactivation of catalysts are considered by comparing continuous and cyclic operations in terms of specific input energy, VOC removal and energy efficiencies, and byproduct formation. Based on the information in the literature, a plasma-catalytic system operating in cyclic adsorption-oxidation mode is recommended for the treatment of air contaminated by dilute VOCs. Finally, the effects of NTP on the regeneration of deactivated catalysts are also discussed.
机译:非热等离子体(NTP)与催化结合是减少稀挥发性有机化合物(VOC)的一种有前途的技术,因为它可在温和的反应条件(即低温和大气压)下运行。这项审查解决了由NTP激活催化剂的机制方面,例如反应物种的产生和固定,氧化还原循环的促进,光催化和局部加热,以阐明等离子体和催化的综合作用。等离子体催化去除VOC优先要求催化剂具有大的比表面积,高的表面氧存储能力并高度可还原。通过比较连续和循环操作的比输入能量,VOC去除率和能效以及副产物的形成,可以考虑催化剂的能耗和减活作用。根据文献中的信息,建议使用以循环吸附-氧化模式运行的等离子体催化系统来处理被稀VOC污染的空气。最后,还讨论了NTP对失活催化剂再生的影响。

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