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Base metals recovery from copper smelter slag by oxidising leaching and solvent extraction

机译:通过氧化浸出和溶剂萃取从铜冶炼炉渣中回收贱金属

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摘要

Due to its amorphous structure, smelter slag cannot efficiently be leached with sulphuric acid; the formation of silica gel induces an increase of leach liquor viscosity, difficult pulp filtration and crud formation during solvent extraction. The problem was solved by leaching with sulphuric acid under hydrogen peroxide, which also performs simultaneous iron oxidation and removal. A copper smelter slag from Lubumbashi, Democratic Republic of Congo, containing 1.4 percent Cu, 0.7 percent Co, 8.9 percent Zn and 20.9 percent Fe(II), has been used in this study. The leaching tests have been carried out at normal pressure on ground slag samples (<100 mu m). Silica gel-free solutions containing copper, cobalt and zinc were produced, so that pulp filtration could be easily carried out. The dissolved base metals were successfully extracted from solution by solvent extraction using kerosene Shellsol D70 as diluent. Copper was extracted with LIX 984 and stripped with sulphuric acid solution. Thereafter, cobalt and zinc were collectively extracted with D2EHPA and then separated by selective scrubbing with sulphuric acid solutions of different dilutions. This method provided an overall recovery of 80 percent Cu, 90 percent Co and 90 percent Zn in separated solutions which could be further treated by electrowinning or salt precipitation.
机译:由于其无定形结构,冶炼炉渣不能有效地被硫酸浸出。硅胶的形成会导致浸出液粘度增加,溶剂萃取过程中难以进行纸浆过滤和形成残渣。该问题通过在过氧化氢下用硫酸浸出而解决,该浸出同时进行铁的氧化和去除。这项研究使用了来自刚果民主共和国卢本巴希的铜冶炼炉渣,其中含有1.4%的铜,0.7%的Co,8.9%的Zn和20.9%的Fe(II)。浸出试验是在常压下对矿渣样品(<100微米)进行的。生产了不含铜,钴和锌的无硅胶溶液,因此可以轻松进行纸浆过滤。使用煤油Shellsol D70作为稀释剂,通过溶剂萃取成功地从溶液中萃取了溶解的贱金属。用LIX 984萃取铜,并用硫酸溶液汽提。之后,用D2EHPA共同萃取钴和锌,然后通过用不同稀释度的硫酸溶液进行选择性洗涤而分离。该方法在分离的溶液中可整体回收80%的Cu,90%的Co和90%的Zn,可通过电解沉积或盐析进一步处理。

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