Optimizing of Silver-Catalyzed Bioleaching of Low-Grade Copper Ores from Yongping, China

Muqing Qiu, Chengcai Huang
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Abstract

The effect of process parameters (pH, pulp density, inoculum volume of the nutrient medium, silver content) on the rate of copper solubilization was analyzed respectively through silver-catalyzed bioleaching experiments with microorganisms in shake flasks. These results show that the optimal process parameters are: pulp density, 2.5 wt%; silver content, 10mg/L; pH, 1.50-1.80; inoculum volume of the nutrient medium, 40vol%. Furthermore, the addition of the silver could catalyze the process of bioleaching, and high silver concentrations would be harmful to the bacterial activity and the copper extraction. pH and inoculum volume of the nutrient medium had a marked influence on the copper extraction and iron extraction. The bioleaching of the low-grade copper ore requires a minimum amount of the nutrient medium to obtain the maxium efficiency.illustrated by the portions given in this document.
永平某低品位铜矿石银催化生物浸出工艺优化
通过摇瓶中微生物的银催化生物浸出实验,分析了工艺参数(pH、矿浆密度、营养培养基接种量、银含量)对铜溶出率的影响。结果表明,最佳工艺参数为:浆密度为2.5 wt%;银含量,10mg/L;pH值,1.50 - -1.80;营养培养基接种量,40vol%。此外,银的加入对浸出过程具有催化作用,高浓度的银会对细菌活性和铜的提取产生不利影响。培养基的pH和接种量对铜和铁的提取有显著影响。低品位铜矿石的生物浸出需要最少的营养培养基,以获得最高的浸出效率。由本文档中给出的部分说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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