State Key Laboratory of Pollution Control and Resource Reuse, Tongji University , Shanghai City 200092, China.
Environ Sci Technol. 2014;48(5):2885-92. doi: 10.1021/es405014g. Epub 2014 Feb 17.
Potassium permanganate (KMnO4) preoxidation is capable of enhancing cyanobacteria cell removal. However, the impacts of KMnO4 on cell viability and potential toxin release have not been comprehensively characterized. In this study, the impacts of KMnO4 on Microcystis aeruginosa inactivation and on the release and degradation of intracellular microcystin-LR (MC-LR) and other featured organic matter were investigated. KMnO4 oxidation of M. aeruginosa exhibited some kinetic patterns that were different from standard chemical reactions. Results indicated that cell viability loss and MC-LR release both followed two-segment second-order kinetics with turning points of KMnO4 exposure (ct) at cty and ctr, respectively. KMnO4 primarily reacted with dissolved and cell-bound extracellular organic matter (mucilage) and resulted in a minor loss of cell viability and MC-LR release before the ct value reached cty. Thereafter, KMnO4 approached the inner layer of the cell wall and resulted in a rapid decrease of cell viability. Further increase of ct to ctr led to cell lysis and massive release of intracellular MC-LR. The MC-LR release rate was generally much slower than its degradation rate during permanganation. However, MC-LR continued to be released even after total depletion of KMnO4, which led to a great increase in MC-LR concentration in the treated water.
高锰酸钾(KMnO4)预氧化能够增强蓝藻细胞的去除效果。然而,KMnO4 对细胞活力和潜在毒素释放的影响尚未得到全面的表征。在这项研究中,研究了 KMnO4 对铜绿微囊藻灭活以及细胞内微囊藻毒素-LR(MC-LR)和其他特征有机物释放和降解的影响。KMnO4 对铜绿微囊藻的氧化表现出一些不同于标准化学反应的动力学模式。结果表明,细胞活力损失和 MC-LR 释放均遵循两段二级动力学,转折点分别为 KMnO4 暴露(ct)值 cty 和 ctr。KMnO4 主要与溶解的和细胞结合的细胞外有机物(黏液)反应,在 ct 值达到 cty 之前,细胞活力和 MC-LR 释放的损失较小。此后,KMnO4 接近细胞壁的内层,导致细胞活力迅速下降。进一步增加 ct 值到 ctr 会导致细胞裂解和大量的细胞内 MC-LR 释放。在锰氧化过程中,MC-LR 的释放速率通常比其降解速率慢得多。然而,即使 KMnO4 完全耗尽,MC-LR 仍继续释放,导致处理水中 MC-LR 浓度大幅增加。