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首页> 外文期刊>ChemEngineering >Electrochemical Impedance Spectroscopy (EIS) Characterization of Water/Sodium Bis(2-Ethylhexyl) Sulfosuccinate-HDEHP-Dodecane Reverse Micelles for Electroextraction of Neodymium
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Electrochemical Impedance Spectroscopy (EIS) Characterization of Water/Sodium Bis(2-Ethylhexyl) Sulfosuccinate-HDEHP-Dodecane Reverse Micelles for Electroextraction of Neodymium

机译:水/双(2-乙基己基)磺基琥珀酸钠-HDEHP / n-十二烷反胶束电萃取钕的电化学阻抗谱(EIS)表征

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摘要

The extraction and separation of metal ions in the lanthanide series using the liquid-liquid extraction (LLX) technique poses a major challenge due to the chemical similarities of the metals and hence interest exists in devising a technique to improve the separation factor. In this work, sodium bis(2-ethylhexyl) sulfosuccinate (AOT) is explored for improved organic phase conductivity to aid the use of an imposed external field to improve the LLX. The electrochemical impedance spectroscopy (EIS) technique was used to determine the effect of molar water content, AOT and HDEHP (bis(2-ethylhexyl) phosphoric acid) concentration, and the temperature on the reverse micelle solution conductivity. Results showed that as AOT concentration and water content increases, conductivity increases until the reverse micelles collapse. The addition of HDEHP caused a significant drop in solution conductivity. For a mixed AOT and HDEHP system and at a small applied external field range of 0–1.4 kV m?1 and 60 rpm stir rate, a significant improvement in Nd extraction was observed relative to the traditional LLX using HDEHP only. With AOT only, a 40% improvement in extraction was observed with applied field relative to the absence of field. Cost consideration favors the use of mixed AOT and HDEHP at a slow stir rate for improved Nd extraction.
机译:由于金属的化学相似性,使用液-液萃取(LLX)技术对镧系元素中的金属离子进行萃取和分离提出了重大挑战,因此人们对设计一种提高分离因子的技术感兴趣。在这项工作中,对双(2-乙基己基)磺基琥珀酸钠(AOT)进行了研究,以提高有机相的电导率,以帮助使用外加电场来改善LLX。电化学阻抗谱(EIS)技术用于确定摩尔水含量,AOT和HDEHP(双(2-乙基己基)磷酸)浓度以及温度对反胶束溶液电导率的影响。结果表明,随着AOT浓度和水含量的增加,电导率增加,直到反胶束塌陷为止。 HDEHP的添加导致溶液电导率显着下降。对于AOT和HDEHP混合系统,在0-1.4 kV m?1和60 rpm的小应用外场范围内,与仅使用HDEHP的传统LLX相比,Nd提取显着改善。仅使用AOT时,相对于没有磁场的情况,在施加磁场的情况下,提取率提高了40%。出于成本考虑,倾向于以缓慢的搅拌速率使用混合的AOT和HDEHP来改善Nd的提取。

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