摘要
低温等离子技术以其反应条件温和、操作简单的优点在处理甲苯气体中被广泛使用,而加入催化剂可以更进一步提高降解率并克服单独使用等离子体高耗能、副产物多的缺点。综合分析了影响等离子体协同催化技术处理甲苯气体的影响因素和作用机理以及相关研究工作进展,并提出低温等离子体协同催化技术的发展方向。
Low-temperature plasma technology is widely used in toluene gas treatment due to its mild reaction conditions and simple operation,and the addition of catalyst can further improve the removal rate and overcome the shortcomings of single plasma,such as high energy consumption and many by-products.The research progress of influencing factors and mechanism of plasma co-catalysis for toluene gas treatment were reviewed,as well as the related research progress,and the development direction of low-thermal plasma co-catalysis was proposed.
作者
李茜
李茹
张宇
牛惠翔
LI Qian;LI Ru;ZHANG Yu;NIU Hui-xiang(School of Environmental and Chemical Engineering,Xi'an Polytechnic University,Xi'an 710048,China)
出处
《当代化工》
CAS
2021年第3期707-711,共5页
Contemporary Chemical Industry
基金
国家自然科学基金(项目编号:11105102)。
关键词
低温等离子体
催化
降解
甲苯
Low-thermal plasma
Catalyst
Degradation
Toluene
作者简介
李茜(1996-),女,山东省日照市人,硕士,研究方向:低温等离子体技术降解VOCs。E-mail:xeclicqian@1l63.com;通信作者:李茹(1972-),女,教授,博士,研究方向:环境污染控制。E-mail:xf1iru@163.com。