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Degradation of cyanotoxins (microcystin) in drinking water using photoelectrooxidation

机译:光电氧化降解饮用水中的氰毒素(微囊藻毒素)

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The discharge of sewage and industrial effluents containing high concentrations of pollutants in water bodies increases eutrophication. Cyanobacteria, some of the organisms whose growth is promoted by high nutrient concentrations, are resistant and produce several types of toxins, known as cyanotoxins, highly harmful to human beings. Current water treatment systems for the public water supply are not efficient in degradation of toxins. Advanced oxidation processes (AOP) have been tested for the removal of cyanotoxins, and the results have been positive. This study examines the application of photoelectrooxidation in the degradation of cyanotoxins (microcystins). The performance of the oxidative processes involved was evaluated separately: Photocatalysis, Electrolysis and Photoelectrooxidation. Results showed that the electrical current and UV radiation were directly associated with toxin degradation. The PEO system is efficient in removing cyanotoxins, and the reduction rate reached 99%. The final concentration of toxin was less than 1 μg/L of microcystin in the treated solution.
机译:水体中含有高浓度污染物的污水和工业废水的排放增加了富营养化。蓝细菌是一些通过高营养物浓度促进其生长的生物体,具有抗药性,并产生几种对人类高度有害的毒素,称为氰毒素。当前用于公共供水的水处理系统不能有效地降解毒素。已经测试了高级氧化工艺(AOP)去除氰毒素的方法,结果是肯定的。这项研究检查了光电氧化在氰毒素(微囊藻毒素)降解中的应用。分别评估了所涉及的氧化过程的性能:光催化,电解和光电氧化。结果表明,电流和紫外线辐射与毒素降解直接相关。 PEO系统有效去除氰毒素,还原率达到99%。在处理过的溶液中,毒素的最终浓度小于1μg/ L微囊藻毒素。

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