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Recycling of copper flue dust via leaching-solvent extraction processing

机译:浸出溶剂萃取法回收铜烟尘

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摘要

© 2014 Balaban Desalination Publications. All rights reserved. Abstract: A laboratory-/bench-scale investigation relating to copper recovery from Chilean copper flue dust is described. Since the dust contained a high amount of copper (nearly 24%), the considered option consisted in the leaching of the metallic material with ammonium chloride solution, thus enabling the dissolution of copper via its ammoniacal complexes, and also rendering, due to the almost neutral conditions of the leaching solution, a near complete lean solution with respect to the presence of other metal accompanying in the dust. Results obtained show that with ammonium chloride solutions, nearly 90% of the copper contained in the dust can be leached at 20°C. Copper enters the solvent extraction-electrowinning circuit due to the following equilibria: (Formula presented.) (Formula presented.) regenerating both the leaching and the solvent extraction reagents. In the above equation, HR represented the active substance of the extractant (Acorga PT5050) used in the solvent extraction circuit; the first of the above equilibria is related to the extraction operation and the second to the strip stage.
机译:©2014 Balaban海水淡化出版物。版权所有。摘要:描述了有关从智利铜烟尘中回收铜的实验室/实验室规模的研究。由于粉尘中含有大量的铜(接近24%),因此考虑的选择包括用氯化铵溶液浸出金属材料,从而使铜通过其氨配合物溶解,并且由于浸出液处于中性状态,相对于粉尘中存在的其他金属,溶液几乎完全是贫油。所得结果表明,使用氯化铵溶液,粉尘中所含铜的近90%可以在20°C下浸出。铜由于以下平衡而进入溶剂萃取-电解沉积回路:(提供了公式。)(提供了公式)使浸出和溶剂提取试剂均再生。在上式中,HR表示溶剂萃取回路中使用的萃取剂(Acorga PT5050)的活性物质;上述平衡的第一个与萃取操作有关,第二个与汽提阶段有关。

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