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Bioleaching and recovery of metals from final slag waste of the copper smelting industry

机译:从铜冶炼行业的最终矿渣中进行生物浸出和回收金属

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Solid waste from the copper smelting industry may be harmful if disposed of in the environment, but it may be a valuable resource if metals can be recovered. The purpose of this study was to evaluate the acid bioleaching of metals from a sample of final smelter slag and the recovery of metals from the leach liquors. Bioleaching was tested in a continuously stirred tank reactor (CSTR) at 20-25 °C with 5% pulp density (particle size 75% <47 um). The yields of metal solubilization after 29 days of contact were 41% Fe, 62% Cu, 35% Zn and 44% Ni. Metals were precipitated in a separate CSTR by titrating the leach liquors with sulfide-rich effluent from a sulfate-reducing fluidized-bed reactor (FBR) (25 °C) to desired pH values. Over 98% of the Cu precipitated at pH > 2.8 and over 99% of the Zn precipitated at pH 3= 3.9. The precipitation of Ni and Fe required higher pH values and was less efficient than Cu and Zn recovery. In addition, bulk precipitation of metals was also tested by feeding the leach liquor directly to another sulfate-reducing FBR. In order to reduce its toxicity and maintain stable sulfate reduction performance in the FBR, the leach liquor had to be diluted ten-fold and the pH adjusted from 0.6 to approximately 4.
机译:如果将铜冶炼行业的固体废物丢弃在环境中,则可能是有害的,但如果可以回收金属,则可能是宝贵的资源。这项研究的目的是评估最终冶炼炉渣样品中金属的酸生物浸出以及从浸出液中回收金属。在连续搅拌釜式反应器(CSTR)中于20-25°C下以5%的纸浆密度(75%的颗粒度<47 um)对生物浸出进行测试。接触29天后的金属增溶收率为41%Fe,62%Cu,35%Zn和44%Ni。通过用来自硫酸盐还原流化床反应器(FBR)(25°C)的富含硫化物的流出液滴定沥滤液到所需的pH值,使金属在单独的CSTR中沉淀。在pH> 2.8时,超过98%的Cu沉淀,在pH 3 = 3.9时,超过99%的Zn沉淀。与铜和锌的回收相比,镍和铁的沉淀需要更高的pH值,效率较低。此外,还通过将浸出液直接进料到另一种硫酸盐还原型FBR中来测试金属的大量沉淀。为了降低其毒性并在FBR中保持稳定的硫酸盐还原性能,必须将浸出液稀释10倍并将pH值从0.6调节至约4。

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