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采用带有光催化电极和活性碳纤维的新型介质阻挡放电反应器去除 H₂S。

Removal of H₂S in a novel dielectric barrier discharge reactor with photocatalytic electrode and activated carbon fiber.

机构信息

Institute of Environment Science & Engineering, Hangzhou Dianzi University, Hangzhou 310018, PR China.

出版信息

J Hazard Mater. 2013 Oct 15;261:38-43. doi: 10.1016/j.jhazmat.2013.06.075. Epub 2013 Jul 8.

Abstract

A novel dielectric barrier discharge (DBD) reactor was applied for removal of H2S. Activated carbon fiber (ACF) and a photocatalytic electrode prepared from sintered metal fibers (SMF) were introduced into the novel reactor. H2S removal rate was enhanced dramatically due to the synergism between DBD and ACF. Peak voltage, initial concentration, resident time and humidity were important factors that influenced the H2S removal rate. 75 mg/m(3) H2S removal rate reached 99.9% at a peak voltage of 25 kV and with a resident time of 2s in the novel reactor. Humidity had an inhibition to H2S decomposition at low peak voltages. And the inhibition became slight at high peak voltages (>20 kV). The novel reactor exhibited better by-products (SO2 and O3) control than other reactors did. And it also had excellent performance stabilization in a long-term operation (30 d).

摘要

一种新型的介质阻挡放电(DBD)反应器被应用于去除 H2S。活性炭纤维(ACF)和一种由烧结金属纤维(SMF)制备的光催化电极被引入到新型反应器中。由于 DBD 和 ACF 的协同作用,H2S 的去除率显著提高。峰值电压、初始浓度、停留时间和湿度是影响 H2S 去除率的重要因素。在峰值电压为 25 kV、停留时间为 2 s 的新型反应器中,75 mg/m3 的 H2S 去除率达到了 99.9%。在低峰值电压下,湿度对 H2S 分解有抑制作用。而在高峰值电压(>20 kV)下,抑制作用变得轻微。与其他反应器相比,新型反应器具有更好的副产物(SO2 和 O3)控制性能。并且它在长期运行(30 d)中也表现出了优异的性能稳定性。

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