Optimization of lanthanum extraction in asymmetric rotation pilot plant column by using central composite methodology

IF 1.5 Q3 GEOSCIENCES, MULTIDISCIPLINARY
M. Asadollahzadeh, R. Torkaman, M. Torab‐Mostaedi
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引用次数: 18

Abstract

ABSTRACT The present work aimed to optimize the lanthanum extraction efficiency in the pilot-scale asymmetric rotating disc contactor. Optimal batch-scale extraction conditions were determined for the preparation of feed for extraction column (D2EHPA 0.08 mol/L; pH~8). In continuous mode, the optimization with the central composite design approach was performed by using three main parameters, such as continuous phase flow rate, agitation intensity, dispersed phase flow rate. Three responses studied were slip velocity, dispersed phase holdup, and extraction efficiency. The higher value of extraction efficiency for lanthanum extraction shows the main effect of agitation intensity on the dispersed phase holdup, slip velocity, and rate of mass transfer. The optimum conditions for extraction efficiency equal 98.5% were obtained at a rotation speed equal to 7.75 1/s, and phase flow rates equal to 1.25 × 10−5 m3/s. The new correlations are estimated to describe the holdup of the dispersed phase and the slip velocity with high accuracy and R-square values equal to 0.9734 and 0.9670, respectively. The results showed that the pilot plant asymmetric rotating disc column could be used as an appropriate column for the lanthanum extraction from aqueous solution as an example of rare earth metals.
中心复合法优化不对称旋转中试柱萃取镧
本工作旨在优化中试规模不对称转盘接触器中的镧萃取效率。确定了萃取柱进料的最佳分批萃取条件(D2EHPA 0.08mol/L,pH~8)。在连续模式下,使用连续相流速、搅拌强度、分散相流速三个主要参数,采用中心复合设计方法进行优化。研究的三个响应是滑移速度、分散相持率和萃取效率。镧萃取效率越高,表明搅拌强度对分散相持率、滑移速度和传质速率的主要影响。在转速为7.75 1/s,相流量为1.25×10−5m3/s的条件下,获得了萃取效率为98.5%的最佳条件。估计了新的相关性,以高精度描述分散相的含率和滑移速度,R平方值分别等于0.9734和0.9670。结果表明,中试装置的非对称圆盘柱可以作为一种合适的柱从水溶液中萃取镧,例如稀土金属。
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来源期刊
Geosystem Engineering
Geosystem Engineering GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
0.00%
发文量
11
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