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首页> 外文期刊>Environmental Technology >Photocatalytic degradation of H_2S in the gas-phase using a continuous flow reactor coated with TiO_2-based acrylic paint
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Photocatalytic degradation of H_2S in the gas-phase using a continuous flow reactor coated with TiO_2-based acrylic paint

机译:使用基于TiO_2的丙烯酸涂料的连续流动反应器光催化降解气相中的H_2S

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摘要

For the photocatalytic degradation of the hydrogen sulphide (H2S) in the gas-phase it was developed a rectangular reactor, coated with acrylic paint supported on fiber cement material. The surface formed by the paint coverage was characterized structural and morphologically by scanning electron microscopy with energy dispersive X-ray and X-ray diffraction analysis. The flow rate and the inlet concentration of H2S were evaluated as operational performance parameters of the reactor. Removal efficiencies of up to 94% were obtained at a flow rate of 2 L min(-1) (residence time of 115 s) and inlet concentration of 31 ppm of H2S. In addition, the H2S degradation kinetics was modelled according to the Langmuir-Hinshelwood (L-H) model for the inlet concentrations of 8-23 ppm of H2S. The results suggest that flow rate has a more important influence on photocatalytic degradation than the inlet concentration. It is assumed that H2S has been oxidized to , a condition that led to a deactivation of the photocatalyst after 193 min of semi-continuous use.
机译:对于气相中的硫酸硫化物(H 2 S)的光催化降解,研制成矩形反应器,涂覆在纤维水泥材料上负载的丙烯酸涂料。通过扫描电子显微镜与能量分散X射线和X射线衍射分析,通过涂漆覆盖物形成的表面在结构和形态学。将H 2 S的流速和入口浓度评价为反应器的操作性能参数。以2L min(-1)(停留时间为115秒)的流速(115秒)和31ppm的入口浓度,获得高达94%的去除效率。此外,H 2 S降解动力学根据Langmuir-Hinshelwood(L-H)模型为8-23ppm的H2S的入口浓度进行了建模。结果表明,流速对光催化降解的影响比入口浓度更重要。假设H2S已被氧化成,该条件导致了在半连续使用193分钟后停用光催化剂。

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