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Kinetics of reactions between chlorine and the cyanobacterial toxins microcystins

机译:氯与蓝藻毒素微囊藻毒素之间反应的动力学

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Blooms of cyanobacteria can give rise to the production of toxins which contaminate drinking water sources. Among the oxidants and disinfectants typically applied in waterworks, chlorine has been found to be effective for the degradation of microcystins. In the present study, unknown second-order rate constants for the reactions of microcystin-LR (MC-LR), -RR and -YR with chlorine were determined over a wide pH range. It was found that an increase of pH has a negative effect on the microcystin degradation rate. Apparent second-order rate constant for the chlorination of MC-LR at 20℃ varied from 475 M~(-1) s~(-1) at pH 4.8 to 9.8 M~(-1) s~(-1) at pH 8.8. From these apparent second-order rate constants, rate constants for the reactions of MC-LR with hypochlorous acid (HOCl) and hypochlorite (CIO~-) were evaluated. Half-life times ranged from minutes at pH 6 to 1 h at pH 8 for a constant residual chlorine concentration of 1.0-0.5 mgl~(-1), typical of oxidation pre-treatment and final disinfection. Similar reactivity with chlorine was found for MC-RR and MC-YR. Therefore, chlorination is a feasible option for microcystin degradation during oxidation and disinfection processes, and can be applied in drinking water treatment in case of cyanobacterial toxin risk if the pH is kept below 8.
机译:蓝细菌的繁殖会导致产生污染饮用水源的毒素。在水厂通常使用的氧化剂和消毒剂中,已发现氯对微囊藻毒素的降解有效。在本研究中,在较宽的pH范围内测定了微囊藻毒素-LR(MC-LR),-RR和-YR与氯的反应的未知二级速率常数。发现pH的升高对微囊藻毒素的降解速率具有负面影响。在20℃下MC-LR氯化的表观二阶速率常数从pH 4.8的475 M〜(-1)s〜(-1)到pH 9.8的9.8 M〜(-1)s〜(-1)变化8.8。从这些表观的二阶速率常数中,评估了MC-LR与次氯酸(HOCl)和次氯酸盐(CIO〜-)反应的速率常数。对于恒定的残留氯浓度1.0-0.5 mgl〜(-1),半衰期在pH值6到pH值1 h范围内为1 h,这是氧化预处理和最终消毒所特有的。发现MC-RR和MC-YR与氯具有相似的反应性。因此,氯化法是氧化和消毒过程中微囊藻毒素降解的可行选择,如果将pH保持在8以下,则可用于饮用水处理,以防止产生蓝藻毒素的危险。

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