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Photocatalytic Degradation of Anionic Surfactant in Titanium Dioxide Suspension

机译:钛白粉悬浮液中阴离子表面活性剂的光催化降解

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In TiO_2 -based photo-catalytic degradation of an anionic detergent (lauryl benzenesulfonate) initial pH of 5.0 proved to be most appropriate for high efficiency of surfactant conversion, although lower pHs were more favorable for the adsorption on the surface of the catalyst. A catalyst concentration of 1 g dm~(-3) was optimum for the mineralization of this pollutant. After decreasing the surfactant concentration below the limit of foaming in a closed photo-reactor utilizing H_2O_2 as electron acceptor, total mineralization of the pollutant could be achieved by a longer-time irradiation in a second, air-bubbled reactor. The activity of the photocatalyst proved to be constant even after several reusages. The temperature increase promoted the photoassisted degradation of the anionic detergent in the range of 20-50 ℃ measured in a home-built pilot equipment. The progress of mineralization became faster only after the conversion of surfactant reached 80-85%. There was found an optimum concentration of the oxidizer, H_2O_2, above which the efficiency of degradation could not be significantly enhanced.
机译:在阴离子清洁剂(月桂基苯磺酸盐)的基于TiO_2的光催化降解中,初始pH值5.0被证明最适合表面活性剂转化的高效率,尽管较低的pH值更有利于催化剂表面的吸附。 1 g dm〜(-3)的催化剂浓度最适合该污染物的矿化。在使用H_2O_2作为电子受体的密闭光反应器中,将表面活性剂的浓度降低至发泡极限以下后,可以通过在第二个鼓泡的反应器中进行较长时间的照射来实现污染物的全部矿化。即使多次使用,光催化剂的活性也被证明是恒定的。在家用试验设备中测得的温度升高在20-50℃范围内促进了阴离子洗涤剂的光辅助降解。仅在表面活性剂的转化率达到80-85%之后,矿化的进程才变得更快。发现氧化剂的最佳浓度H_2O_2,在该浓度以上不能明显提高降解效率。

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