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Zinc and lead extraction from complex raw sulfides by sequential bioleaching and acidic brine leach

机译:通过顺序生物浸提和酸性盐水浸提从复杂的原始硫化物中提取锌和铅

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This research was designed to investigate zinc and lead extraction by combined sequential biooxidation and acidic brine leaching from a raw complex sulfide ores containing sphalerite, pyrite, and galena. For the biooxidation, the zinc dissolution from the sulfide ores by the adapted bacteria was examined. The effects on ore particle size, pH, pulp density, and temperature on bacterial leaching was studied systematically. From the experiments it was shown that about 95 percent of zinc was extracted after 20 days of bioleaching at 30 deg C. Subsequently, 98 percent of the lead was extracted from the bioleached residues using an acidic sodium chloride solution as the lead lixiviant at a temperature of 60 deg C for 90 min leach. Leaching kinetics indicated that diffusion through the product layer was the rate controlling process during zinc bioleaching, and that the overall rate of chemical reaction at the surface was the rate controlling process during lead brine leaching. The relative activation energies of the overall rate during the two different leaching stages were calculated to be 32.09 and 44.35 kJ/mol, respectively.
机译:这项研究旨在研究通过顺序生物氧化和酸性盐水浸出从含闪锌矿,黄铁矿和方铅矿的复合硫化矿中提取锌和铅的方法。对于生物氧化,研究了适应细菌对锌从硫化矿石中的溶解情况。系统地研究了矿石粒度,pH,纸浆密度和温度对细菌浸出的影响。从实验中可以看出,在30℃下进行20天生物浸提后,大约95%的锌被提取出来。随后,使用酸性氯化钠溶液作为铅浸出液,在一定温度下从生物浸提残留物中提取了98%的铅。 60℃下90分钟浸出。浸出动力学表明,通过产品层的扩散是锌生物浸出过程中的速率控制过程,表面化学反应的总速率是铅盐水浸出过程中的速率控制过程。在两个不同的浸出阶段中,总速率的相对活化能分别计算为32.09和44.35 kJ / mol。

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