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Destruction of volatile organic compounds in a dielectric barrier discharge plasma reactor.

机译:介电势垒放电等离子体反应器中挥发性有机化合物的破坏。

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Scope and method of study. The purpose of this study was to optimize the operating conditions for the destruction of VOCs in a dielectric barrier discharge plasma reactor. A representative VOC mixture comprising of s-butanol, toluene, methyl isobutyl ketone and butyl acetate was studied to obtain destruction characteristics. The total concentration of VOCs was initially 100 ppm. The operating parameters studied for optimization were primary voltage (60--110 V AC), frequency (200--400 Hz), and relative humidity (0--80%). Initial studies were conducted by varying residence time, keeping the other parameters constant, to determine the effect of residence time on destruction efficiency of VOCs.; Findings and conclusions. The optimum residence time for operation was 0.2 s in the test reactor. A total VOC destruction of 92% was achieved for a primary voltage of 90 V AC (applied voltage across the reactor was 14916 V AC) and frequency of 300 Hz. In general, overall destruction of VOCs increased with an increase in voltage, frequency, and relative humidity. At 90 V primary and 300 Hz, the overall destruction of VOCs was 91% in dry condition and 96% at 35--40% relative humidity. (Abstract shortened by UMI.)
机译:研究范围和方法。这项研究的目的是优化破坏介质阻挡放电等离子体反应器中VOC的操作条件。研究了由仲丁醇,甲苯,甲基异丁基酮和乙酸丁酯组成的代表性VOC混合物,以获得破坏特性。 VOC的总浓度最初为100 ppm。为进行优化而研究的工作参数是主电压(60--110 V AC),频率(200--400 Hz)和相对湿度(0--80%)。通过改变停留时间来进行初步研究,保持其他参数不变,以确定停留时间对挥发性有机化合物破坏效率的影响。结论和结论。在测试反应器中,最佳操作停留时间为0.2 s。对于90 V AC的一次电压(反应器两端施加的电压为14916 V AC)和300 Hz的频率,VOC的总破坏率为92%。通常,VOC的总体破坏程度随电压,频率和相对湿度的增加而增加。在90 V初级电压和300 Hz时,在干燥条件下VOC的总破坏率为91%,在相对湿度为35--40%时为96%。 (摘要由UMI缩短。)

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