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使用田口设计和主成分分析的多响应优化,通过纳米γ-氧化铝从水溶液中去除茜素红和茜素黄的二元混合物。

Multi-response optimization using Taguchi design and principle component analysis for removing binary mixture of alizarin red and alizarin yellow from aqueous solution by nano γ-alumina.

作者信息

Zolgharnein Javad, Asanjrani Neda, Bagtash Maryam, Azimi Gholamhasan

机构信息

Department of Chemistry, Faculty of Science, Arak University, 38156-876 Arak, Iran.

Department of Chemistry, Faculty of Science, Arak University, 38156-876 Arak, Iran.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2014 May 21;126:291-300. doi: 10.1016/j.saa.2014.01.100. Epub 2014 Feb 15.

Abstract

The nanostructure of γ-alumina was used as an effective adsorbent for simultaneous removing of a mixture of alizarin red and alizarin yellow from aqueous solutions. The Taguchi design and principle component analysis were applied to explore effective parameters for achieving a higher adsorption capacity and removal percentage of the binary mixture containing alizarin red and alizarin yellow. Seven factors including temperature, contact time, initial pH value, the shaker rate, the sorbent dose, and initial concentrations of alizarin red and alizarin yellow in three levels were considered through the Taguchi technique. A L27 orthogonal array was used to determine the signal-to-noise ratio. Then, the removal percentage (R%) and adsorption capacity (q) of the above-mentioned dyes were transformed into an accurate S/N ratio. The Taguchi method indicates that the solution pH has the most contribution in controlling the removal percentage of alizarin red and alizarin yellow. Under optimal condition, the maximum removal percentages of 99% and 78.5%, and the capacity uptake of 54.4 and 39.0mg g(-1) were obtained for both alizarin red and alizarin yellow, respectively. Isotherm modeling and kinetic investigations showed that Langmuir, modified Langmuir, and pseudo-second-order models describe both the adsorption equilibrium and kinetic behavior well. The Fourier transform infrared analysis also firmly confirmed the involving active sites of nano γ-alumina in the adsorption process.

摘要

γ-氧化铝的纳米结构被用作一种有效的吸附剂,用于同时从水溶液中去除茜素红和茜素黄的混合物。采用田口设计和主成分分析来探索有效参数,以实现对含有茜素红和茜素黄的二元混合物更高的吸附容量和去除率。通过田口技术考虑了七个因素,包括温度、接触时间、初始pH值、振荡器速率、吸附剂剂量以及茜素红和茜素黄的初始浓度,每个因素设置三个水平。使用L27正交阵列来确定信噪比。然后,将上述染料的去除率(R%)和吸附容量(q)转换为精确的信噪比。田口方法表明,溶液pH值对控制茜素红和茜素黄的去除率贡献最大。在最佳条件下,茜素红和茜素黄的最大去除率分别为99%和78.5%,吸附容量分别为54.4和39.0mg g(-1)。等温线建模和动力学研究表明,朗缪尔模型、修正朗缪尔模型和伪二级模型能很好地描述吸附平衡和动力学行为。傅里叶变换红外分析也有力地证实了纳米γ-氧化铝的活性位点参与了吸附过程。

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