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过一硫酸盐非活化直接降解亚甲基蓝:反应参数、动力学和机制。

Direct degradation of methylene blue by unactivated peroxymonosulfate: reaction parameters, kinetics, and mechanism.

机构信息

Naval Medical Center of PLA, Second Military Medical University, Shanghai, 200433, China.

Department of Environmental Science and Engineering, Fudan University, Shanghai, 200433, China.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(50):75597-75608. doi: 10.1007/s11356-022-21197-8. Epub 2022 Jun 3.

Abstract

Advanced oxidation processes (AOPs) are efficient methods for water purification. However, there are few studies on using peroxymonosulfate (PMS) to remove pollutants directly. In this study, about 76% of methylene blue (MB) was removed by PMS directly within 180 min through a non-radical pathway, verified by scavenging tests, electron paramagnetic resonance and kinetic calculations. Additionally, the effects of PMS dosage, MB concentration, temperature, initial pH and competitive anions were determined. High PMS dosage, temperature and pH promoted MB degradation (from 76 to 98%) while MB concentration showed no effect on MB removal. Besides, MB degradation followed pseudo-first-order kinetic with rate constants of 0.0082 to 0.3912 min. The second-order rate constant for PMS reaction with MB was 0.08 M s at pH 3-6, but increased dramatically to 4.68 M s at pH 10.50. Chlorine could be catalysed by PMS at high concentration Cl and degradation efficiency reached 98% within 90 min. High concentration of bicarbonate accelerated MB removal due to the high pH value while humic acid showed a marginal effect on MB degradation. Furthermore, TOC removal rate of MB in the presence of chloride reached 45%, whereas PMS alone caused almost no mineralisation. This study provides new insights into pollutant removal and an additional strategy for water purification.

摘要

高级氧化工艺(AOPs)是水净化的有效方法。然而,直接使用过一硫酸盐(PMS)去除污染物的研究较少。本研究中,在 180 分钟内,约 76%的亚甲基蓝(MB)通过非自由基途径直接被 PMS 去除,这一结果通过清除试验、电子顺磁共振和动力学计算得到了验证。此外,还确定了 PMS 用量、MB 浓度、温度、初始 pH 值和竞争阴离子的影响。高 PMS 用量、温度和 pH 值促进了 MB 的降解(从 76%提高到 98%),而 MB 浓度对 MB 的去除没有影响。此外,MB 降解遵循假一级动力学,速率常数为 0.0082 至 0.3912 min。在 pH 值为 3-6 时,PMS 与 MB 的二级反应速率常数为 0.08 M s,而在 pH 值为 10.50 时,该速率常数急剧增加到 4.68 M s。在高浓度 Cl 存在下,PMS 可以催化氯的反应,在 90 分钟内,降解效率达到 98%。高浓度的碳酸氢根由于高 pH 值而加速了 MB 的去除,而腐殖酸对 MB 的降解影响不大。此外,在有氯离子存在的情况下,MB 的 TOC 去除率达到了 45%,而单独使用 PMS 几乎没有矿化作用。本研究为污染物去除提供了新的见解,并为水净化提供了一种额外的策略。

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