Fenton-like degradation of methyl orange by alumina-supported Cu–Co catalysts at neutral pH: Optimization by the Taguchi method

Yayun Juang, J. Jehng
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Abstract

Fenton oxidation is considered to be an effective method for removing non-biodegradable organic materials from industrial wastewater. However, several challenges need to be overcome for its utilization in industrial-scale applications. A series of alumina-supported Cu–Co samples were prepared via a simple sol–gel method, and their utility for Fenton-like degradation of methyl orange (MO) at neutral pH was assessed. In addition, various catalyst synthesis parameters, namely (Cu + Co)/Al molar ratio, Cu/Co molar ratio, water content, and treatment conditions, were optimized by the Taguchi method. The parameters were selected in three levels, and L9 from the orthogonal array design was used. The optimum synthesis parameters for the catalyst included a (Co + Cu)/Al molar ratio of 0.08, a Co/Cu molar ratio of 1/3, an H2O/Al molar ratio of 6, a calcination temperature of 400°C, and a calcination time of 8 h. Furthermore, Brunauer–Emmett–Teller surface area analysis, scanning electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and temperature-programmed reduction were employed to characterize the physical and chemical properties of the samples. The results revealed that the optimized catalyst achieved a 94% removal efficiency of MO and a 75% removal efficiency of total organic carbon. Compared to the data reported in similar previous studies, the catalyst prepared herein demonstrated promising development potential.
氧化铝支撑的铜-钴催化剂在中性 pH 下对甲基橙的芬顿降解:田口方法优化
芬顿氧化法被认为是去除工业废水中不可生物降解有机物的有效方法。然而,要将其用于工业规模的应用,还需要克服一些挑战。本研究通过简单的溶胶-凝胶法制备了一系列氧化铝支撑的 Cu-Co 样品,并评估了它们在中性 pH 下对甲基橙(MO)进行 Fenton 类降解的效用。此外,还采用田口方法优化了各种催化剂合成参数,即(Cu + Co)/Al 摩尔比、Cu/Co 摩尔比、水含量和处理条件。参数分三级选择,采用正交阵列设计中的 L9。催化剂的最佳合成参数包括:(Co + Cu)/Al 摩尔比为 0.08、Co/Cu 摩尔比为 1/3、H2O/Al 摩尔比为 6、煅烧温度为 400°C、煅烧时间为 8 小时。此外,还采用了布鲁瑙尔-埃美特-泰勒表面积分析、扫描电子显微镜、X 射线衍射、X 射线光电子能谱和温度编程还原等方法来表征样品的物理和化学特性。结果表明,优化后的催化剂对 MO 的去除率达到 94%,对总有机碳的去除率达到 75%。与之前类似研究中的数据相比,本研究制备的催化剂具有良好的发展潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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