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Degradation of microcystin-LR by ozone in the presence of Fenton reagent

机译:在Fenton试剂存在下臭氧对微囊藻毒素LR的降解

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摘要

In this study the effectiveness and feasibility of the degradation of microcystin-LR (MC-LR) using a combined method ozone/Fenton reagent was investigated. The decomposition of the toxin was determined by the chromatographic technique. The effect of the Fenton reaction on the ozonation was observed at various concentrations of ozone at pH 3.0 and 6.8. A low concentration of ozone (0.01 mg/L) given simultaneously with Fenton reagent was more effective in MC-LR degradation than ozone or Fenton reagent treatment individually regardless of the pH. At higher concentrations of ozone the use together with Fenton reagent at pH 6.8 was less efficient in MC-LR degradation than treatment with ozone alone, whereas at pH 3.0 Fenton process turned out to be more effective. The mixture of ozone and hydrogen peroxide was more striking than using ozone with Fenton reagent regardless of the pH. The complete degradation of MC-LR was achieved using ozone alone at a concentration of 0.10 mg/L, whereas the same result using ozonation with Fenton reagent required a dose of ozone of 0.20 mg/L at pH 6.8. In acidic pH the total removal of MC-LR was achieved using ozone alone at a concentration of 0.20 mg/L and the same result was obtained for the combined method of ozone/Fenton reagent.
机译:在这项研究中,研究了使用臭氧/芬顿试剂联合方法降解微囊藻毒素-LR(MC-LR)的有效性和可行性。毒素的分解通过色谱技术确定。在pH为3.0和6.8的各种臭氧浓度下,均观察到Fenton反应对臭氧化的影响。与Fenton试剂同时使用的低浓度臭氧(0.01 mg / L)与单独使用臭氧或Fenton试剂进行处理相比,无论pH值如何,在MC-LR降解中均更有效。在较高的臭氧浓度下,将pH值为6.8的Fenton试剂与单独使用臭氧处理相比,在MC-LR降解中效率较低,而在pH值为3.0的情况下,Fenton工艺更有效。与pH值无关,臭氧和过氧化氢的混合物比将臭氧与Fenton试剂一起使用更引人注目。仅使用浓度为0.10 mg / L的臭氧就可以完全降解MC-LR,而使用Fenton试剂进行臭氧化的相同结果则需要在pH 6.8下使用0.20 mg / L的臭氧剂量。在酸性pH条件下,仅使用浓度为0.20 mg / L的臭氧即可完全去除MC-LR,并且臭氧/ Fenton试剂的组合方法可获得相同的结果。

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