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Fe(II)激活的双氧化剂(过硫酸盐/过氧化钙)体系对酚类化合物的高效降解。

Highly efficient degradation of phenolic compounds by Fe(II)-activated dual oxidant (persulfate/calcium peroxide) system.

机构信息

School of Architecture, Civil, Environmental and Energy Engineering, Kyungpook National University, Daegu, 41566, Republic of Korea.

Department of Environmental Engineering, Sunchon National University, Suncheon, Jeollanam-do, 57922, Republic of Korea.

出版信息

Chemosphere. 2022 Jul;299:134392. doi: 10.1016/j.chemosphere.2022.134392. Epub 2022 Mar 21.

Abstract

This study demonstrates the feasibility, reaction mechanisms, and potential of practical applications of a dual oxidant (DuOx) system comprising calcium peroxide (CP) and persulfate (PS) catalyzed using Fe(II) [PS/CP/Fe(II)]. The DuOx system was superior in phenol degradation to single oxidant systems, i.e., PS/Fe(II) or CP/Fe(II), with 95.5% phenol removal under an optimum condition of a phenol/PS/CP/Fe(II) molar ratio of 1/1/5/6 ([Phenol]=0.5 mM). Based on scavenger studies and electron spin resonance (ESR) spectroscopy, the phenol removal in the DuOx system was barrierless, with negative activation energy assisted by robust reactive species. The phenol degradation results in the presence of methanol, t-butanol, l-histidine, and NaN. The ESR spectroscopy indicates that phenol degradation is attributed dominantly to O generated by recombining O and radicals, such as hydroxyl (HO) and sulfate (SO). The performance of the DuOx system was highly efficient in pH 3-11, up to 10 mM Cl, SO, or NO, and up to 50 mg/L humic acids but was strongly suppressed by more than 10 mM HCO and HPO. In addition, the DuOx system was efficient in phenol removal in natural groundwater as well as removing and mineralizing other phenolic compounds (PCs) such as bisphenol A, chlorophenol, dichlorophenol, trichlorophenol, and nitrophenol. These results provide insights into the reactions induced by the DuOx system and confirm its applicability of in situ chemical oxidation in refractory organic pollutants.

摘要

本研究证明了由过氧化钙 (CP) 和过硫酸盐 (PS) 组成的双氧化剂 (DuOx) 系统在使用 Fe(II) 催化时的可行性、反应机制和实际应用潜力 [PS/CP/Fe(II)]。DuOx 系统在苯酚降解方面优于单一氧化剂系统,即在最佳条件下,苯酚/过硫酸盐/过氧化钙/Fe(II)摩尔比为 1/1/5/6([苯酚]=0.5 mM)时,苯酚去除率达到 95.5%。基于清除剂研究和电子顺磁共振 (ESR) 光谱,DuOx 系统中的苯酚去除是无阻碍的,具有负的活化能,由强大的反应性物质辅助。在甲醇、叔丁醇、l-组氨酸和 NaN 的存在下进行苯酚降解实验。ESR 光谱表明,苯酚降解主要归因于 O 和自由基(如羟基 (HO) 和硫酸根 (SO)) 重新组合生成的 O。DuOx 系统在 pH 3-11 范围内性能高效,对 10 mM Cl、SO、或 NO 以及高达 50 mg/L 的腐殖酸具有较高的容忍度,但对超过 10 mM 的 HCO 和 HPO 则有强烈的抑制作用。此外,DuOx 系统在去除天然地下水中的苯酚以及去除和矿化其他酚类化合物(如双酚 A、氯酚、二氯酚、三氯酚和硝基酚)方面也非常有效。这些结果深入了解了 DuOx 系统引起的反应,并证实了其在难处理有机污染物原位化学氧化中的适用性。

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