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膨润土负载氧化锌纳米颗粒对纺织废水的增强声催化作用:响应面法研究

Enhanced sonocatalysis of textile wastewater using bentonite-supported ZnO nanoparticles: Response surface methodological approach.

作者信息

Darvishi Cheshmeh Soltani Reza, Jorfi Sahand, Safari Mahdi, Rajaei Mohammad-Sadegh

机构信息

Department of Environmental Health Engineering, School of Health, Arak University of Medical Sciences, Arak, Iran.

Department of Environmental Health Engineering, School of Public Health, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran; Environmental Technologies Research Center, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.

出版信息

J Environ Manage. 2016 Sep 1;179:47-57. doi: 10.1016/j.jenvman.2016.05.001. Epub 2016 May 10.

Abstract

The scope of this study was the use of bentonite as the carrier of ZnO nanoparticles for enhancing the sonocatalytic decolorization of Basic Red 46 (BR46) in the aqueous phase. The results demonstrated the higher sonocatalytic activity of bentonite-supported ZnO nanoparticles (BSZNs) in comparison with the suspended ZnO nanoparticles (SZNs). The particle size of BSZNs (5-40 nm) was lower than that of SZNs (20-120 nm). Due to the immobilization of ZnO nanoparticles, a specific surface area of 80.6 m(2)/g was obtained for the BSZNs, which was higher than the specific surface area of the raw bentonite (42.2 m(2)/g). Optimization of the process via response surface methodology (RSM) based on central composite design (CCD) showed the maximum sonocatalytic decolorization efficiency (%) of 89.92% in which the initial dye concentration, the ZnO/bentonite ratio, the sonocatalyst dosage, and the initial pH were 6 mg/L, 0.3, 2.5 g/L and 9, respectively. The byproducts generated during the sonocatalysis of BR46 over BSZNs were identified using gas chromatography-mass spectrometry (GC-MS) analysis. From an application viewpoint, the sonocatalysis of real textile wastewater resulted in a COD removal efficiency (%) of about 44% within a reaction time of 150 min.

摘要

本研究的范围是使用膨润土作为氧化锌纳米颗粒的载体,以增强水相中碱性红46(BR46)的声催化脱色效果。结果表明,与悬浮的氧化锌纳米颗粒(SZNs)相比,膨润土负载的氧化锌纳米颗粒(BSZNs)具有更高的声催化活性。BSZNs的粒径(5-40纳米)低于SZNs(20-120纳米)。由于氧化锌纳米颗粒的固定化,BSZNs的比表面积为80.6平方米/克,高于原膨润土的比表面积(42.2平方米/克)。基于中心复合设计(CCD)的响应面方法(RSM)对工艺进行优化,结果表明最大声催化脱色效率(%)为89.92%,此时初始染料浓度、氧化锌/膨润土比例、声催化剂用量和初始pH值分别为6毫克/升、0.3、2.5克/升和9。使用气相色谱-质谱(GC-MS)分析确定了BR46在BSZNs上声催化过程中产生的副产物。从应用角度来看,实际纺织废水的声催化在150分钟的反应时间内实现了约44%的化学需氧量去除效率(%)。

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