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亚铁零价铁耦合激活过硫酸盐:性能与机制。

Activating persulfate by Fe⁰ coupling with weak magnetic field: performance and mechanism.

机构信息

State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, PR China; Department of Civil Engineering of Jiujiang College, Jiujiang 332005, Jiangxi, PR China.

State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, PR China.

出版信息

Water Res. 2014 Oct 1;62:53-62. doi: 10.1016/j.watres.2014.05.042. Epub 2014 Jun 4.

Abstract

Weak magnetic field (WMF) and Fe(0) were proposed to activate PS synergistically (WMF-Fe(0)/PS) to degrade dyes and aromatic contaminants. The removal rates of orange G (OG) by WMF-Fe(0)/PS generally decreased with increasing initial pH (3.0-10.0) and increased with increasing Fe(0) (0.5-3.0 mM) or PS dosages (0.5-3.0 mM). Compared to its counterpart without WMF, the WMF-Fe(0)/PS process could induce a 5.4-28.2 fold enhancement in the removal rate of OG under different conditions. Moreover, the application of WMF significantly enhanced the decolorization rate and the mineralization of OG. The degradation rates of caffeine, 4-nitrophenol, benzotriazole and diuron by Fe(0)/PS were improved by 2.1-11.1 fold due to the superimposed WMF. Compared to many other sulfate radical-based advanced oxidation technologies under similar reaction conditions, WMF-Fe(0)/PS technology could degrade selected organic contaminants with much greater rates. Sulfate radical was identified to be the primary radical species responsible for the OG degradation at pH 7.0 in WMF-Fe(0)/PS process. This study unraveled that the presence of WMF accelerated the corrosion rate of Fe(0) and thus promoted the release of Fe(2+), which induced the increased production of sulfate radicals from PS and promoted the degradation of organic contaminants. Employing WMF to enhance oxidation capacity of Fe(0)/PS is a novel, efficient, promising and environmental-friendly method since it does not need extra energy and costly reagents.

摘要

弱磁场 (WMF) 和零价铁 (Fe(0)) 被提出协同激活过硫酸盐 (WMF-Fe(0)/PS) 以降解染料和芳香族污染物。WMF-Fe(0)/PS 对橙 G (OG) 的去除率通常随初始 pH 值 (3.0-10.0) 的增加而降低,并随 Fe(0) (0.5-3.0 mM) 或 PS 剂量 (0.5-3.0 mM) 的增加而增加。与没有 WMF 的对照相比,在不同条件下,WMF-Fe(0)/PS 工艺可将 OG 的去除率提高 5.4-28.2 倍。此外,WMF 的应用显著提高了 OG 的脱色率和矿化率。由于叠加 WMF,Fe(0)/PS 对咖啡因、4-硝基苯酚、苯并三唑和敌草隆的降解速率提高了 2.1-11.1 倍。与许多其他在类似反应条件下的基于硫酸根自由基的高级氧化技术相比,WMF-Fe(0)/PS 技术可以以更大的速率降解选定的有机污染物。在 WMF-Fe(0)/PS 过程中,在 pH 7.0 下,硫酸根自由基被确定为降解 OG 的主要自由基物种。本研究表明,WMF 的存在加速了 Fe(0)的腐蚀速率,从而促进了 Fe(2+)的释放,这诱导了 PS 产生更多的硫酸根自由基,并促进了有机污染物的降解。利用 WMF 来增强 Fe(0)/PS 的氧化能力是一种新颖、高效、有前途且环保的方法,因为它不需要额外的能量和昂贵的试剂。

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