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微波放电无电极灯发射的紫外/真空紫外辐射下低浓度硫化氢的光解

Photolysis of low concentration H2S under UV/VUV irradiation emitted from microwave discharge electrodeless lamps.

作者信息

Xia Lan-Yan, Gu Ding-Hong, Tan Jing, Dong Wen-Bo, Hou Hui-Qi

机构信息

Institute of Environmental Science, Fudan University, Shanghai 200433, China.

出版信息

Chemosphere. 2008 Apr;71(9):1774-80. doi: 10.1016/j.chemosphere.2008.01.050. Epub 2008 Mar 10.

Abstract

The photolysis of simulating low concentration of hydrogen sulfide malodorous gas was studied under UV irradiation emitted by self-made microwave discharge electrodeless lamps (i.e. microwave UV electrodeless mercury lamp (185/253.7 nm) and iodine lamp (178.3/180.1/183/184.4/187.6/206.2 nm)). Experiments results showed that the removal efficiency (eta H2S) of hydrogen sulfide was decreased with increasing initial H2S concentration and increased slightly with gas residence time; H2S removal efficiency was decreased dramatically with enlarged pipe diameter. Under the experimental conditions with pipe diameter of 36 mm, gas flow rate of 0.42 standard l s(-1), eta H2S was 52% with initial H2S concentration of 19.5 mg m(-3) by microwave mercury lamp, the absolute removal amount (ARA) was 4.30 microg s(-1), and energy yield (EY) was 77.3 mg kW h(-1); eta H2S was 56% with initial H2S concentration of 18.9 mg m(-3) by microwave iodine lamp, the ARA was 4.48 microg s(-1), and the EY was 80.5mg kW h(-1). The main photolysis product was confirmed to be SO4(2-) with IC.

摘要

在自制的微波放电无极灯(即微波紫外无极汞灯(185/253.7纳米)和碘灯(178.3/180.1/183/184.4/187.6/206.2纳米))发射的紫外光照射下,研究了模拟低浓度硫化氢恶臭气体的光解。实验结果表明,硫化氢的去除效率(ηH2S)随初始硫化氢浓度的增加而降低,随气体停留时间略有增加;随着管径增大,硫化氢去除效率急剧下降。在管径为36毫米、气体流量为0.42标准升每秒(-1)的实验条件下,对于初始硫化氢浓度为19.5毫克每立方米的情况,微波汞灯的ηH2S为52%,绝对去除量(ARA)为4.30微克每秒(-1),能量产率(EY)为77.3毫克每千瓦时(-1);对于初始硫化氢浓度为18.9毫克每立方米的情况,微波碘灯的ηH2S为56%,ARA为4.48微克每秒(-1),EY为80.5毫克每千瓦时(-1)。通过离子色谱法确认主要光解产物为SO4(2-)。

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