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首页> 外文期刊>Hydrometallurgy >Solvent extraction of cesium and rubidium from brine solutions using 4-tert-butyl-2-(alpha-methylbenzyl)-phenol
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Solvent extraction of cesium and rubidium from brine solutions using 4-tert-butyl-2-(alpha-methylbenzyl)-phenol

机译:使用4-叔丁基-2-(α-甲基苄基)-phenol从盐水溶液中溶剂萃取铯和铷

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摘要

A comprehensive study on the separation of cesium and rubidium from potassium with 4-tert-butyl-2-(alpha-methylbenzyl)-phenol (t-BAMBP) from a synthetic brine solution containing 20 mg/L Cs, 200 mg/L Rb and 5 g/L K was conducted. The effects of alkalinity, t-BAMBP concentration, temperature, A/O ratio on extraction were investigated. It was found that the best conditions to extract cesium and rubidium were using 30% t-BAMBP concentration with 0.1 M NaOH feed solution alkalinity under room temperature, for example 22 degrees C, at an A/O ratio of 1. Under these conditions, the separation factor of cesium and rubidium over potassium were found to be 139 and 11, respectively. The kinetics of both extraction and stripping were fast with equilibrium reached within 2 min. All extracted cesium and rubidium and 93% potassium were stripped with 0.1 M HCI at an A/O ratio of 1:1 in a single contact. A batch continuous test with 5 extraction stages was conducted under these conditions. It was found that over 99% cesium and rubidium were extracted with 19.4% potassium co-extracted. The concentration ratios of potassium over cesium decreased from 216 in the feed solution to 42 in the loaded organic solution and that of potassium over rubidium from 22 to 43, resulting in a decrease in concentration ratios of potassium over cesium and rubidium by about 5 times. Further work should target to test feed solution containing sodium and to improve extraction efficiency and selectivity of the extraction system. (C) 2017 Published by Elsevier B.V.
机译:从含有20mg / L Cs,200mg / L rb的合成盐水溶液中与4-叔丁基-2-(α-甲基苄基)-phenol(T-Bambp)钾(T-Bambp)分离铯和铷的综合研究进行了5克/低速。研究了碱度,T-BambP浓度,温度,A / O比例对萃取的影响。发现提取铯和铷的最佳条件是在室温下使用30%T-Bambp浓度,例如22℃,以A / O比在这些条件下,发现铯和铷的分离因子分别为139和11。提取和剥离的动力学快速达到2分钟内的平衡。所有提取的铯和铷和93%的钾用0.1M HCl剥离0.1MCI,在单个接触中以1:1的比率为1:1。在这些条件下进行了具有5个提取级的分批连续测试。发现,用19.4%共提取的钾萃取超过99%的铯和铷。铯钾的浓度比从饲料溶液中的216℃下降到42中,在负载的有机溶液中,并在22-33的铷中钾上的钾溶液,导致铯和铷的浓度比减少约5次。进一步的工作应靶向测试含钠的饲料溶液,提高提取系统的提取效率和选择性。 (c)2017年由Elsevier B.V发布。

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  • 来源
    《Hydrometallurgy》 |2017年第2017期|共7页
  • 作者单位

    CSIRO Minerals Resources Natl Res Flagship Waterford WA 6152 Australia;

    CSIRO Minerals Resources Natl Res Flagship Waterford WA 6152 Australia;

    CSIRO Minerals Resources Natl Res Flagship Waterford WA 6152 Australia;

    CSIRO Minerals Resources Natl Res Flagship Waterford WA 6152 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金技术;
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