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首页> 外文期刊>Archives of Metallurgy and Materials >USING AN INTERDIGITAL MICROMIXER FOR SEPARATION OF In3+ FROM ZINC HYDROMETALLURGICAL PROCESS WITH D2EHPA AS AN EXTRACTANT
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USING AN INTERDIGITAL MICROMIXER FOR SEPARATION OF In3+ FROM ZINC HYDROMETALLURGICAL PROCESS WITH D2EHPA AS AN EXTRACTANT

机译:使用叉指微混合器与D2ehPa用锌氢冶金工艺分离In3 +作为萃取剂

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摘要

Experiments were performed in an interdigital micromixer with 30 microchannels (40 mu m width of each channel) to separate In3+, Fe3+ and Zn2+ from sulfate solutions using Di-(2-ethylhexyl) phosphoric acid (D2EHPA) as the extractant. The effects of pH, extractant concentration and flow rate on the extraction efficiency and flow rate on mass transfer coefficient of In3+, Fe3+ and Zn2+ were investigated. At a phase flow rate of 7.0 mL/min and initial solution pH of 0.423, the extraction efficiency of In3+, Fe3+ and Zn2+ was 99.29%, 3.43% and 2.54%, respectively and mass transfer coefficient of In3+, Fe3+ and Zn2+ was 144.307 s(-1),1.018 s(-1) and 0.750 s(-1). Then, the loaded organic phase was stripped in an interdigital micromixer. At a phase flow rate of 9.0 mL/min and HCl concentration of 160 g/L, stripping efficiency of In3+ was 98.92% and mass transfer coefficient of In3+ was 169.808 s(-1), while concentration of Fe3+ and Zn2+ was lower than 0.005 g/L with good separation of In3+ from Fe3+ and Zn2+.
机译:在萃取剂中的渐进区微混合器中进行实验,其使用30微通道(每个通道的40μm宽度),以使用二(2-乙基己基)磷酸(D2ehpa)作为萃取剂与硫酸盐溶液分离。研究了pH,萃取剂浓度和流速对in3 +,Fe3 +和Zn2 +的萃取效率和流速对萃取效率和流速的影响。在7.0ml / min的相流速和0.423的初始溶液pH的过程中,In3 +,Fe3 +和Zn2 +的提取效率分别为99.29%,分别为3.43%和2.54%,分别转移系数为3 +,Fe3 +和Zn2 +为144.307 s (-1),1.018 S(-1)和0.750 s(-1)。然后,将负载的有机相剥离在叉指微混合器中。在9.0mL / min的相流速下,HCl浓度为160g / L,In3 +的汽提效率为98.92%,并且In3 +的质量转移系数为169.808秒(-1),而Fe3 +和Zn2 +的浓度低于0.005 G / L具有良好的分离IN3 +来自FE3 +和Zn2 +。

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