首页> 外文期刊>Journal of Molecular Liquids >Evaluation of photocatalytic degradation of 2,4-Dinitrophenol from synthetic wastewater using Fe3O4@SiO2@TiO2/rGO magnetic nanoparticles
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Evaluation of photocatalytic degradation of 2,4-Dinitrophenol from synthetic wastewater using Fe3O4@SiO2@TiO2/rGO magnetic nanoparticles

机译:使用Fe3O4 / rgo磁性纳米粒子使用Fe3O4 / rgo磁性纳米粒子从合成废水中光催化降解2,4-二硝基苯酚的光催化降解

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Dinitrophenols (DNP), as a priority pollutant, is present in the effluents of several industries and also attracts the environmentalists' attentions, due to its harmful effects on human health. Several research have been conducted for 2,4-DNP degradation using advanced oxidation process (AOP). This study aimed to evaluate the degradation of 2,4-DNP by Fe3O4@SiO2@TiO2/rGO photocatalyst. FESEM, EDS, XRD, FTIR and VSM techniques were done to determine the characteristics of synthesized catalyst. Different variables such as pH of solution, initial concentrations of 2,4-DNP and photocatalyst dosages were studied to measure the degradation of 2,4-DNP. Also, the effect of interfering ions (e.g., Cl-, SO42-, CO32-) were investigated. Mineralization of pollutant in optimum conditions was also determined by TOC analysis. Finally, the reusability of magnetic photocatalyst was deliberated. In optimum experimental conditions (pH = 7, 2,4-DNP = 40 mg/L, photocatalyst dosage = 0.2 g/L), maximum 2,4-DNP removal was obtained 88.84% in 30 min reaction time with TOC removal of 50.04%. Interfering ions reduced 2,4-DNP degradation in order of CO32- Cl SO42-. Photocatalyst recovering (4 round) caused reduction of removal efficiency within 16.58%. Photocatalytic degradation of 2,4-DNP followed pseudo first kinetic order. It could be concluded that the synthesized photocatalyst was a proper choice for degradation of 2,4-DNP by photocatalytic AOP process, based on good performance and high reusability. (C) 2018 Elsevier B.V. All rights reserved.
机译:作为优先级污染物的二硝酚(DNP)存在于几个行业的污水中,并且由于其对人类健康的有害影响,也吸引了环保主义者的注意。使用先进的氧化过程(AOP)进行了2,4-DNP降解进行了几项研究。本研究旨在评估Fe3O4 @ SiO2 / Rgo光催化剂2,4-DNP的降解。完成FeSEM,EDS,XRD,FTIR和VSM技术以确定合成催化剂的特性。研究了诸如溶液的pH,初始浓度为2,4-DNP和光催化剂剂量的不同变量,以测量2,4-DNP的降解。此外,研究了干扰离子(例如,Cl-,SO 42-,CO 32)的影响。通过TOC分析也确定了最佳条件下污染物在最佳条件下的矿化。最后,刻心磁性光催化剂的可重用性。在最佳实验条件下(pH = 7,2,4-DNP = 40mg / L,光催化剂剂量= 0.2g / L),在30分钟的反应时间内获得最大2,4-DNP去除88.84%,TOC去除50.04 %。干扰离子以CO32-的顺序降低2,4-DNP劣化。 Cl& SO42-。光催化剂恢复(4圆形)在16.58%以内降低去除效率。 2,4-DNP的光催化降解跟踪伪第一动力学顺序。 It could be concluded that the synthesized photocatalyst was a proper choice for degradation of 2,4-DNP by photocatalytic AOP process, based on good performance and high reusability. (c)2018年elestvier b.v.保留所有权利。

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