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高锰酸盐氧化微囊藻毒素:pH 和温度依赖性动力学、DOM 特征的影响及氧化机制再探讨。

Oxidation of Microcystins by Permanganate: pH and Temperature-Dependent Kinetics, Effect of DOM Characteristics, and Oxidation Mechanism Revisited.

机构信息

School of Urban and Environmental Engineering , Ulsan National Institute of Science and Technology (UNIST) , 50 UNIST-gil , Ulju-gun, Ulsan 44919 , Republic of Korea.

出版信息

Environ Sci Technol. 2018 Jun 19;52(12):7054-7063. doi: 10.1021/acs.est.8b01447. Epub 2018 Jun 1.

Abstract

Oxidative degradation of six representative microcystins (MCs) (MC-RR, -LR, -YR, -LF, -LW, and -LA) by potassium permanganate (KMnO; Mn(VII)) was investigated, focusing on the temperature- and pH-dependent reaction kinetics, the effect of dissolved organic matter (DOM), and the oxidation mechanisms. Second-order rate constants for the reactions of the six MCs with Mn(VII) ( k) were determined to be 160.4-520.1 M s (MC-RR > -LR ≈ -YR > -LF ≈ -LW > -LA) at pH 7.2 and 21 °C. The k values exhibited activation energies ranging from 15.1 to 22.4 kJ mol. With increasing pH from 2 to 11, the k values decreased until pH 5, and plateaued over the pH range of 5-11, except for that of MC-YR (which increased at pH > 8). Species-specific second-order rate constants were calculated using predicted p K values of MCs. The oxidation of MCs in natural waters was accurately predicted by the kinetic model using k and Mn(VII) exposure (∫[Mn(VII)]dt) values. Among different characteristics of DOM in natural waters, UV, SUVA, and the abundance of humic-like substances characterized by fluorescence spectroscopy exhibited good correlation with ∫[Mn(VII)]dt. A thorough product study of MC-LR oxidation by Mn(VII) was performed using liquid chromatography-mass spectrometry.

摘要

过锰酸钾(KMnO4;Mn(VII))对六种代表性微囊藻毒素(MCs)(MC-RR、-LR、-YR、-LF、-LW 和 -LA)的氧化降解进行了研究,重点研究了温度和 pH 依赖性反应动力学、溶解有机物(DOM)的影响和氧化机制。在 pH 7.2 和 21°C 下,测定了六种 MCs 与 Mn(VII)(k)反应的二级速率常数(k)为 160.4-520.1 M s(MC-RR > -LR ≈ -YR > -LF ≈ -LW > -LA)。k 值表现出 15.1 至 22.4 kJ mol 的活化能。随着 pH 从 2 增加到 11,k 值降低到 pH 5,然后在 pH 5-11 范围内趋于平稳,除了 MC-YR(在 pH>8 时增加)。使用 MCs 的预测 pK 值计算了物种特异性的二级速率常数。使用 k 和 Mn(VII)暴露(∫[Mn(VII)]dt)值的动力学模型准确预测了天然水中 MCs 的氧化。在天然水中不同 DOM 的特性中,UV、SUVA 和荧光光谱表征的富里酸样物质的丰度与∫[Mn(VII)]dt 具有良好的相关性。使用液相色谱-质谱法对 Mn(VII)氧化 MC-LR 进行了彻底的产物研究。

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