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同时实施弱磁场和曝气以通过类 Fenton 反应去除环丙沙星。

Simultaneously implement of both weak magnetic field and aeration for ciprofloxacin removal by Fenton-like reaction.

机构信息

Research Center for Environmental Determinants of Health (RCEDH), Health Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Nano Drug Delivery Research Center, Health Technology Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

J Environ Manage. 2019 Sep 15;246:776-784. doi: 10.1016/j.jenvman.2019.06.045. Epub 2019 Jun 19.

Abstract

This study evaluates the ability of heterogeneous Fenton-like reaction (nano zero-valent iron (NZVI)/HO) in combination with weak magnetic field (WMF) under continuous oxygen supply by air bubbling for pollutant abatement (using ciprofloxacin as a model pollutant). The considered operating variables were initial pH, catalyst dosage, reaction time and different intensities of magnetic field. Results indicated that NZVI/HO/aeration/weak magnetic field could effectively decompose ciprofloxacin at neutral condition and higher removal rates are observed at higher pH and NZVI concentrations. Superimposing a weak magnetic field leads to 20% enhancement in ciprofloxacin removal by catalytic Fenton under aeration condition. Employing simultaneously magnetic field induction and aeration exhibit excellent capability to the NZVI oxidation and significantly increased the dissolution rate of iron. Based on Fourier transform infrared spectroscopy, transformation products of NZVI are FeO and FeO(OH). The faster mass transport due to Lorentz and field gradient force, more oxygen diffusion to the iron surface and promoted electrochemical reactions results in more OH° production. Generation of weak magnetic field by permanent magnets and using aeration for both mixing and in situ oxygen supply significantly enhanced the Fenton reaction performance. This combination technology doesn't need any energy input and costly chemicals hence can be used easily for wastewater treatment applications.

摘要

本研究评估了在连续供氧条件下(通过空气鼓泡提供氧气),非均相芬顿反应(纳米零价铁(NZVI)/HO)与弱磁场(WMF)相结合对污染物去除的能力(以环丙沙星作为模型污染物)。考虑的操作变量包括初始 pH 值、催化剂用量、反应时间和不同强度的磁场。结果表明,NZVI/HO/曝气/弱磁场可以在中性条件下有效分解环丙沙星,并且在较高 pH 值和 NZVI 浓度下观察到更高的去除率。在曝气条件下,施加弱磁场可使催化芬顿法对环丙沙星的去除率提高 20%。同时采用磁场感应和曝气可以表现出对 NZVI 氧化的优异能力,并显著提高铁的溶解速率。根据傅里叶变换红外光谱,NZVI 的转化产物为 FeO 和 FeO(OH)。由于洛伦兹力和场梯度力导致更快的质量传递、更多的氧气扩散到铁表面以及促进了电化学反应,从而产生了更多的 OH°。通过永磁体产生弱磁场并同时用于曝气以进行混合和原位供氧,显著增强了芬顿反应性能。该组合技术不需要任何能量输入和昂贵的化学物质,因此可以很容易地用于废水处理应用。

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