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Biologically assisted copper secondary sulfide ore leaching in the presence of chloride

机译:在氯化物存在下的生物辅助铜二级硫化物矿石浸出

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Mining operations today face a difficult challenge in terms of water availability, with most of these deposits located in arid areas where fresh water is scarce. This is especially relevant for bio-mining operations where not only the source but the water quality can be a decisive factor for its successful utilization. This research evaluates the metallurgical and microbiological performance of an adapted chloride and copper-resistant mixed culture during the leaching (laboratory scale columns) of a secondary copper sulfide at different chloride concentrations. Up to 6 g/l chloride all columns established Eh potentials over 750 mV with complete oxidation of ferrous iron in the PLS showing well established microbial activity. Copper recovery in solution, along with a high redox potential, was established faster in the mesophilic column but leveled off quickly over time. Copper extraction showed that the 6 g/l chloride column has the highest metallurgical performance (83% CuT) with 4 extra points of copper recovery over the 1.5 g/L and 3 g/l Cl~- columns. These results are a good indication that comparable copper recovery rates -to the ones achieved using fresh water- can be reached in the presence of important chloride concentrations by way of using the use of a suitable and well adapted microbial population. The related process and chloride-resistant culture have been patented under the following ID N°: EP2313534/US0201095.
机译:今天采矿业务在水可用性方面面临着艰难的挑战,其中大多数这些存款位于干旱地区,淡水稀缺。这对于不仅可以源的生物挖掘业务特别相关,而且水质可以是其成功利用的决定性因素。该研究评估了在不同氯化物浓度下浸出(实验室尺寸柱)期间适应的氯化物和铜抗性培养物的冶金和微生物性能。最高可达6克/升氯,所有柱建立了超过750 mV的EH电位,并在PLS中完全氧化铁铁,显示出明显的微生物活性。溶液中的铜恢复以及高氧化还原潜力,在嗜液柱中更快地建立,但随着时间的推移迅速分离。铜提取表明,6克/氯化铝柱具有最高的冶金性能(83%切割),具有4个额外的铜回收点,超过1.5g / L和3g / L Cl〜柱。这些结果是良好的指示,即可比的铜回收率 - 通过使用合适且良好适应的微生物群体的使用,可以在重要的氯化物浓度存在下达到使用淡水的良好指示 - 可以在重要的氯化物浓度存在下达到。相关方法和抗氯化物抗性培养已经在以下ID N°下获得专利:EP2313534 / US020101095。

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