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首页> 外文期刊>Green chemistry >Commercial process for the recovery of metals from ITO etching industry wastewater by liquid-liquid extraction: simulation, analysis of mechanism, and mathematical model to predict optimum operational conditions
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Commercial process for the recovery of metals from ITO etching industry wastewater by liquid-liquid extraction: simulation, analysis of mechanism, and mathematical model to predict optimum operational conditions

机译:通过液液萃取从ITO蚀刻工业废水中回收金属的商业流程:模拟,机理分析和数学模型,以预测最佳运行条件

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摘要

A commercial process for the recovery of metals from the indium-tin-oxide (ITO) etching industry wastewater by liquid-liquid extraction has been developed. A suitable cross current simulated batch process was developed, and extraction mechanisms involved in the process were analyzed. Mathematical models were proposed to correlate metal extractability with respect to extractant concentrations and metal loading with respect to the solvent/solution volume ratio. Optimum conditions required for the complete scrubbing of Mo and Sn using Cyanex 272 and quantitative extraction of pure In using DP-8R were estimated by a proposed model. A good agreement between the proposed model and the observed results was found. Based on the laboratory scale simulation, a pilot plant batch process was developed and simulated. The developed process is a techno-economically feasible, environmentally friendly, occupationally safe, and clean and green process for the commercial treatment of ITO etching industry wastewater and recovery of valuable metals through liquid-liquid extraction. In with 99.999% purity, Cu nanopowder with 99.999% purity, Mo and Sn with 99% purity were recovered.
机译:已经开发了通过液-液萃取从铟-锡-氧化物(ITO)蚀刻工业废水中回收金属的商业方法。开发了合适​​的交叉电流模拟分批工艺,并分析了该工艺涉及的萃取机理。提出了数学模型以将金属可萃取性与萃取剂浓度和金属负载与溶剂/溶液体积比相关。通过提出的模型估算了使用Cyanex 272完全洗涤Mo和Sn以及使用DP-8R定量萃取纯In所需的最佳条件。在建议的模型和观察到的结果之间找到了很好的一致性。在实验室规模模拟的基础上,开发并模拟了中试工厂的批处理过程。所开发的工艺是技术经济可行,环境友好,职业安全,清洁且绿色的工艺,用于ITO蚀刻工业废水的商业处理和通过液-液萃取回收有价值的金属。回收纯度为99.999%的Cu纳米粉,纯度为99%的Mo和Sn。

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