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聚合物复合珠对镝的吸附:使用田口方法进行稳健的参数优化

Dysprosium sorption by polymeric composite bead: robust parametric optimization using Taguchi method.

作者信息

Yadav Kartikey K, Dasgupta Kinshuk, Singh Dhruva K, Varshney Lalit, Singh Harvinderpal

机构信息

Rare Earths Development Section, Materials Group, Bhabha Atomic Research Centre, Mumbai 400085, India.

Rare Earths Development Section, Materials Group, Bhabha Atomic Research Centre, Mumbai 400085, India.

出版信息

J Chromatogr A. 2015 Mar 6;1384:37-43. doi: 10.1016/j.chroma.2015.01.061. Epub 2015 Jan 27.

Abstract

Polyethersulfone-based beads encapsulating di-2-ethylhexyl phosphoric acid have been synthesized and evaluated for the recovery of rare earth values from the aqueous media. Percentage recovery and the sorption behavior of Dy(III) have been investigated under wide range of experimental parameters using these beads. Taguchi method utilizing L-18 orthogonal array has been adopted to identify the most influential process parameters responsible for higher degree of recovery with enhanced sorption of Dy(III) from chloride medium. Analysis of variance indicated that the feed concentration of Dy(III) is the most influential factor for equilibrium sorption capacity, whereas aqueous phase acidity influences the percentage recovery most. The presence of polyvinyl alcohol and multiwalled carbon nanotube modified the internal structure of the composite beads and resulted in uniform distribution of organic extractant inside polymeric matrix. The experiment performed under optimum process conditions as predicted by Taguchi method resulted in enhanced Dy(III) recovery and sorption capacity by polymeric beads with minimum standard deviation.

摘要

已合成了包封二(2-乙基己基)磷酸的聚醚砜基珠子,并对其从水介质中回收稀土元素的性能进行了评估。使用这些珠子,在广泛的实验参数范围内研究了镝(III)的回收率和吸附行为。采用利用L-18正交阵列的田口方法来确定对从氯化物介质中提高镝(III)的吸附量从而实现更高回收率起最主要作用的工艺参数。方差分析表明,镝(III)的进料浓度是影响平衡吸附容量的最主要因素,而水相酸度对回收率的影响最大。聚乙烯醇和多壁碳纳米管的存在改变了复合珠子的内部结构,并导致有机萃取剂在聚合物基质内均匀分布。按照田口方法预测的最佳工艺条件进行的实验,使得聚合物珠子的镝(III)回收率和吸附容量提高,且标准偏差最小。

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