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Mechanism studies on chlorine and potassium permanganate degradation of microcystin-LR in water using high-performance liquid chromatography tandem mass spectrometry

机译:高效液相色谱串联质谱法研究水中微囊藻毒素-LR降解氯和高锰酸钾的机理

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摘要

The presence of microystins (MCs) in water has the potential to harm people's health. In the MCs various isomers, MC-LR has the strongest toxicity and is the most harmful one. At present, several kinds of pre-oxidants, which are commonly used in water treatment process, are effective to remove MC-LR. However, it is still not clear about their degeneration mechanisms. Chlorine and potassium permanganate were selected in the present work since they are used worldwide for preoxidation treatment. Using the testing method of HPLC-MS, studies on the degeneration of MC-LR were conducted. The results indicate that HPLC-MS is creditable and sensitive. It was also found that linear relationship between concentration of MC-LR and peak area holds in the range of 5 - 500 mg.L-1 on the calibration curves, the correlation coefficient (R-2) is 0.9993. Under the general condition of oxidant dose and reaction time, MC-LR was degraded rapidly. With active chlorine and potassium permanganate the degradation reaction followed the mode of first-order kinetics. The molecular weight of the degradation product was determined through analyzing the full-scan mass spectrum of MC-LR. And the oxidative degradation mechanism of MC-LR was discussed as well.
机译:水中的微囊藻素(MC)的存在可能损害人们的健康。在MC的各种异构体中,MC-LR具有最强的毒性,也是最有害的一种。目前,水处理过程中常用的几种预氧化剂对去除MC-LR有效。然而,关于它们的退化机制仍不清楚。由于氯和高锰酸钾在世界范围内被用于预氧化处理,因此在本工作中选择了氯和高锰酸钾。使用HPLC-MS的测试方法,进行了MC-LR变性的研究。结果表明,HPLC-MS是可靠且敏感的。在校正曲线上还发现MC-LR浓度与峰面积的线性关系在5-500 mg.L-1范围内,相关系数(R-2)为0.9993。在氧化剂剂量和反应时间的一般条件下,MC-LR迅速降解。用活性氯和高锰酸钾降解反应遵循一级动力学模式。通过分析MC-LR的全扫描质谱来确定降解产物的分子量。并探讨了MC-LR的氧化降解机理。

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