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Hydrometallurgical separation of zinc and copper from waste brass ashes using solvent extraction with D2EHPA

机译:使用溶剂萃取与D2ehpa溶剂萃取液中锌和铜的液态冶金分离

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A blend of brass ashes containing 48.0% of zinc and 16.6% of copper was processed through selective leaching with dilute H2SO4and solvent extraction, using D2EHPA as the extracting agent in order to separate zinc and copper. Solvent extraction tests performed in bench and pilot scales were designed to evaluate the following operating parameters: time, pH, D2EHPA concentration, A/O ratio in the extraction step, and O/A ratio in the stripping step. Zinc present in the brass ashes was efficiently leached by H2SO4(recovery of 91.9%), whereas only 8.6% of copper was leached, producing a liquor containing zinc (28.6g/L), copper (1.5g/L), calcium (0.45g/L), iron (0.43g/L), and chloride (0.22g/L), as well as fluoride, lead, nickel and cadmium, at levels below 0.01g/L. Zinc was selectively extracted over copper by solvent extraction with D2EHPA. A continuous solvent extraction run in pilot scale was carried out using 4 extraction stages (pH=2, A/O ratio=1) and 2 stripping stages (O/A ratio=2), where 91.8% of zinc extraction and 96.9% of zinc stripping were achieved. Iron extraction efficiency reached 85.9%, thus illustrating the need for its prior removal if required. The fluorine extraction was 29.9%, as compared to 10.4% for chlorine, whose respective extractions are related to the presence of iron and zinc in the liquor, as evidenced by species speciation analysis. A copper concentrate containing 42.2% was obtained in the leaching step.
机译:通过选择性浸出,用稀释的H2SO4和溶剂萃取来加工含有48.0%锌和16.6%的铜的黄铜灰和16.6%的铜,以分离锌和铜。设计在板凳和试验尺度中进行的溶剂提取试验旨在评估以下操作参数:时间,pH,D2ehPA浓度,A / O在提取步骤中的比率,溶液步骤中的O / A比率。通过H 2 SO 4有效地浸出了黄铜灰的锌(回收率为91.9%),而只有8.6%的铜被浸出,产生含有锌(28.6g / L),铜(1.5g / L),钙(0.45 G / L),铁(0.43g / L)和氯化物(0.22g / L),以及氟化物,铅,镍和镉,水平低于0.01g / L。用D2ehPa通过溶剂萃取选择性地萃取锌。使用4个提取阶段(pH = 2,A / O比率= 1)和2个汽提阶段(O / A比率= 2)进行连续溶剂萃取,其中91.8%的锌提取物和96.9%达到锌汽提。铁提取效率达到85.9%,因此如果需要,需要先发后去除。氟萃取为29.9%,相比氯的10.4%,其各自的萃取与液体中的铁和锌的存在有关,如物种形态分析所证明。在浸出步骤中获得含有42.2%的铜浓缩物。

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