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Application of carbon-coated TiO_2 for decomposition of methylene blue in a photocatalytic membrane reactor

机译:碳包覆TiO_2在光催化膜反应器中分解亚甲基蓝的应用

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An application of carbon-coated TiO_2 for decomposition of methylene blue (MB) in a photocatalytic membrane reactor (PMR), coupling photocatalysis and direct contact membrane distillation (DCMD) was investigated. Moreover, photodegradation of a model pollutant in a batch reactor without membrane distillation (MD) was also examined. Carbon-modified TiO_2 catalysts containing different amount of carbon and commercially available TiO_2 (ST-01) were used in this study. The carbon-coated catalyst prepared from a mixture of ST-01 and polyvinyl alcohol in the mass ratio of 70/30 was the most effective in degradation of MB from all of the photocatalysts applied. Photodecomposition of MB on the recovered photocatalysts was lower than on the fresh ones. The photodegradation of MB in the PMR was slower than in the batch reactor, what probably resulted from shorter time of exposure of the catalyst particles to UV irradiation. The MD process could be successfully applied for separation of photocatalyst and by-products from the feed solution.
机译:研究了碳包覆TiO_2在光催化膜反应器(PMR)中分解亚甲基蓝(MB),耦合光催化和直接接触膜蒸馏(DCMD)中的应用。此外,还检查了在不进行膜蒸馏(MD)的间歇反应器中对模型污染物的光降解。在这项研究中使用了含碳量不同的碳改性的TiO_2催化剂和市售的TiO_2(ST-01)。由质量比为70/30的ST-01和聚乙烯醇的混合物制备的碳涂层催化剂对于从所有应用的光催化剂中降解MB最有效。甲基溴在回收的光催化剂上的光分解率低于新鲜的。 MBR在PMR中的光降解速度比间歇反应器中的MB光降解速度慢,这可能是由于催化剂颗粒暴露于UV辐射的时间缩短所致。 MD工艺可以成功地用于从进料溶液中分离光催化剂和副产物。

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