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用于挥发性有机化合物分解的滑动弧放电装置的放大分析与开发。

Scale-up analysis and development of gliding arc discharge facility for volatile organic compounds decomposition.

作者信息

Bo Zheng, Yan Jianhua, Li Xiaodong, Chi Yong, Cen Kefa

机构信息

State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, Zhejiang University, Hangzhou, Zhejiang, People's Republic of China.

出版信息

J Hazard Mater. 2008 Jul 15;155(3):494-501. doi: 10.1016/j.jhazmat.2007.11.105. Epub 2007 Dec 4.

Abstract

The influences of inlet gas flow rate and reactor configuration on volatile organic compounds (VOCs) decomposition efficiency in a traditional gliding arc (T-GA) facility are studied based on laboratory experiments and numerical simulation. The ratio of the nozzle diameter and the shortest distance of two electrodes should be maintained in a suitable value range to guarantee the decomposition efficiency, which indicates simply enlarging the nozzle inner diameter is not a proper way to raise the T-GA treatment capacity in a fixed supply voltage condition. A developed gliding arc gas discharge (D-GA) reactor based on a modified gas feed system is proposed: small flow rate air goes through the bottom nozzle to process the GA evolution, and high flow rate contaminated gas goes frontal through the plasma region and decomposes. The performances of D-GA reactor in the decomposition of VOCs with relative high gas flow rate, including decomposition efficiency and specific energy consumption, are better than T-GA reactor. D-GA reactor also avoids the drawbacks of the increases of power system amount and electric power consumption in multi-electrode GA system.

摘要

基于实验室实验和数值模拟,研究了进气流量和反应器结构对传统滑弧(T-GA)装置中挥发性有机化合物(VOCs)分解效率的影响。喷嘴直径与两电极最短距离之比应保持在合适的数值范围内,以确保分解效率,这表明在固定供电电压条件下,单纯增大喷嘴内径并非提高T-GA处理能力的恰当方法。提出了一种基于改进气体进料系统的改进型滑弧气体放电(D-GA)反应器:小流量空气通过底部喷嘴以处理滑弧演化,高流量污染气体从前部穿过等离子体区域并分解。D-GA反应器在较高气体流量下分解VOCs的性能,包括分解效率和比能耗,均优于T-GA反应器。D-GA反应器还避免了多电极滑弧系统中电力系统量增加和电力消耗增加的缺点。

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