首页> 外文期刊>Solvent Extraction and Ion Exchange >Separation and recovery of heavy metals from concentrated smelting wastewater by synergistic solvent extraction using a mixture of 2-hydroxy-5-nonylacetophenone oxime and bis(2,4,4-trimethylpentyl) -phosphinic acid
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Separation and recovery of heavy metals from concentrated smelting wastewater by synergistic solvent extraction using a mixture of 2-hydroxy-5-nonylacetophenone oxime and bis(2,4,4-trimethylpentyl) -phosphinic acid

机译:使用2-羟基-5-壬酮肟和双(2,4,4-三甲基戊基) - 膦酸的混合物,通过协同溶剂萃取从浓缩冶炼废水中分离和回收重金属的重金属

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摘要

Extraction and separation of copper, zinc, nickel, and cadmium from calcium and magnesium in concentrated smelting wastewater by synergistic solvent extraction using a mixture of 2-hydroxy-5-nonylacetophenone oxime (Mextral 84H) and bis(2,4,4 -trimethylpentyl)-phosphinic acid (Cyanex 272) in an aliphatic diluent (DT-100) was studied. The effects of extractant concentrations, equilibrium pH, organic-to-aqueous phase ratios, system temperature, and extraction and stripping efficiencies on the extraction performance of the heavy metals were investigated. Extraction of pH isotherms showed that addition of Cyanex 272 to Mextral 84H causes obvious synergistic shifts for zinc and cadmium and a slightly antagonistic shift for nickel. The separation factor of cadmium over magnesium was 155.7 and the pH(50) values between the metals were over 1.00pH units. Semi-continuous tests for the metals extraction, scrubbing, and stripping were conducted in a continuous extraction apparatus with conditions further optimized for separation of the metals. Nearly 100% of the copper and nickel and over 98% of the zinc and cadmium were recovered with less than 0.1mg/L copper and nickel, 26mg/L of zinc, and 10mg/L of cadmium remaining in the raffinate. A process in which all valuable metals are extracted simultaneously and stripped selectively at optimal conditions is proposed that is entirely feasible for the separation of copper, zinc, nickel, and cadmium from calcium and magnesium in concentrated smelting wastewater. The study determines the fundamental parameters for the treatment of smelting wastewater by solvent extraction.
机译:使用2-羟基 - 5-壬酮肟(Mextral 84h)和双(2,4,4--甲基戊基烯酮的混合溶剂萃取浓缩冶炼废水中铜,锌,镍和镉从浓缩冶炼废水中的钙,锌,镍和镉(2,4,4--甲基戊基研究了脂族稀释剂(DT-100)中的 - 膦酸(Cyanex 272)。研究了提取液浓度,平衡pH,有机 - 水相比,系统温度和提取和剥离效率对重金属提取性能的影响。 pH等温线的提取表明,加入含有锌和镉的明显协同变化以及镍的略微拮抗偏移。镉上镉的分离因子为155.7,金属之间的pH(50)值超过1.00ph。在连续的萃取装置中进行半连续试验,在连续提取装置中进行,该条件进一步优化用于分离金属。铜和镍的近100%和超过98%的锌和镉在萃取液中剩下的少于0.1mg / L铜和镍,26mg / L锌和10mg / L镉。提出了一种方法,其中在最佳条件下选择性地剥离所有有价值的金属并选择性地剥离,这对于将铜,锌,镍和镉分离在浓缩冶炼废水中的钙,锌,镍和镉的分离是完全可行的。该研究确定了通过溶剂提取处理冶炼废水的基本参数。

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