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Direct in situ supercritical fluid extraction of neodymium ion from its oxide using thenoyl tri fluoro acetone–tri butyl phosphate–methanol in carbon dioxide

机译:使用壬基三氟丙酮-磷酸三丁酯-甲醇的二氧化碳直接原位超临界流体萃取氧化物中的钕离子

摘要

A novel process has been developed for the direct extraction of heavy metal ions from their oxides using ligand assisted supercritical carbon dioxide (SC CO2) without and with a cosolvent. A systematic investigation has been carried out to ascertain the mechanism of direct in situ supercritical fluid extraction, which involves three essential steps, namely ionisation, complexation and extraction. The present work involves direct extraction of metal ions from their oxides using neodymium (Nd) as candidate metal utilizing a synergy of thenoyl tri fluoroacetone (TTA) and tri butyl phosphate (TBP). The mechanism has been established by analysing the conversion of neodymium oxide to Nd3+ and metal complex. By the reaction with carbonic acid, the metal oxide is converted into metal cation. SC CO2 facilitates tautomerisation and dissolution of TTA required for the chelation. Addition of methanol to SC CO2 enhances the formation of metal complex which is being extracted in the SC fluid phase. Effects of process parameters have been evaluated on the performance of the process to ascertain the optimum conditions.
机译:已经开发了一种新方法,该方法可以使用配体辅助超临界二氧化碳(SC CO2)在不使用助溶剂的情况下直接从其氧化物中直接萃取重金属离子。已经进行了系统的研究,以确定直接原位超临界流体萃取的机理,其涉及三个基本步骤,即电离,络合和萃取。目前的工作涉及利用钕(Nd)作为候选金属,利用壬基三氟丙酮(TTA)和磷酸三丁酯(TBP)的协同作用,从其氧化物中直接提取金属离​​子。通过分析氧化钕向Nd3 +和金属络合物的转化建立了机理。通过与碳酸反应,金属氧化物转化为金属阳离子。 SC CO2促进了螯合所需的TTA的互变异构和溶解。将甲醇添加到SC CO2中可增强在SC液相中提取的金属络合物的形成。已经评估了工艺参数对工艺性能的影响,以确定最佳条件。

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