个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:电气工程学院
学科:环境工程. 电工理论与新技术. 高电压与绝缘技术
办公地点:大连理工大学电气工程学院静电所
负直流电晕诱发低压电极多孔绝缘层微放电的参数优化
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发表时间:2017-01-01
发表刊物:高电压技术
所属单位:电子信息与电气工程学部
卷号:43
期号:6
页面范围:1759-1765
ISSN号:1003-6520
摘要:In order to improve the intensity of plasma and the degradation
efficiency of VOCs, the line-plate discharge device was used, and the
porous insulating materials were attached to the low-voltage electrode,
using the negative DC corona discharge to induce the surface
microdischarge in the pore of insulating material on the low-voltage
electrode. The effects of different insulating materials, film
thickness(d), number of pores(n) and pore size(s) on the discharge
characteristic and the formation of ozone were investigated to optimize
the experimental parameters of the microdischarge induced by DC corona
discharge system. The experimental results show that adhesion of porous
insulating materials on low-voltage electrode can efficiently improve
the plasma intensity compared with the uncovered electrode, among the
studied materials, the porous polytetrafluoroethylene(PTFE) showed the
best improvement. Increasing the number of holes in the insulating
layer, decreasing the film thickness and the pore diameter can
significantly enhance the discharge plasma intensity. Under the
conditions of d=50 mum,n=50,s=10 mum, when the voltage is 12 kV,the
discharge current is 1 296 muA,and the ozone concentration is 3.11 mg/L,
which is 4.5 times and 2.2 times higher, respectively, than that of the
uncovered low-voltage electrode. The microdischarge in porous PTFE on
low-voltage electrode can effectively improve the degradation rate of
toluene. When the voltage is 13 kV the degradation efficiency of toluene
reached 58%, increased31% compared with that of uncovered electrode.
备注:新增回溯数据