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Selective removal of transition metals from acidic mine waters by novel consortia of acidophilic sulfidogenic bacteria

机译:新型嗜酸性硫源细菌联合体从酸性矿井水中选择性去除过渡金属

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摘要

Two continuous-flow bench-scale bioreactor systems populated by mixed communities of acidophilic sulfate-reducing bacteria were constructed and tested for their abilities to promote the selective precipitation of transition metals (as sulfides) present in synthetic mine waters, using glycerol as electron donor. The objective with the first system (selective precipitation of copper from acidic mine water containing a variety of soluble metals) was achieved by maintaining a bioreactor pH of similar to 2.22.5. The second system was fed with acidic (pH 2.5) synthetic mine water containing 3 mM of both zinc and ferrous iron, and varying concentrations (0.530 mM) of aluminium. Selective precipitation of zinc sulfide was possible by operating the bioreactor at pH 4.0 and supplementing the synthetic mine water with 4 mM glycerol. Analysis of the microbial populations in the bioreactors showed that they changed with varying operational parameters, and novel acidophilic bacteria (including one sulfidogen) were isolated from the bioreactors. The acidophilic sulfidogenic bioreactors provided proof of principle that segregation of metals present in mine waters is possible using simple online systems within which controlled pH conditions are maintained. The modular units are versatile and robust, and involve minimum engineering complexity.
机译:构建了两个连续流动的台式规模生物反应器系统,该系统由嗜酸性硫酸盐还原细菌的混合群落组成,并使用甘油作为电子给体,测试了它们促进合成矿井水中存在的过渡金属(作为硫化物)选择性沉淀的能力。第一个系统的目标(从含有多种可溶性金属的酸性矿井水中选择性沉淀铜)是通过将生物反应器的pH维持在2.22.5左右来实现的。第二个系统中装有酸性(pH 2.5)合成矿井水,该矿井水包含3 mM的锌和亚铁,以及不同浓度(0.530 mM)的铝。通过在pH 4.0下运行生物反应器并向合成矿井水中补充4 mM甘油,可以选择性沉淀硫化锌。对生物反应器中微生物种群的分析表明,它们随着操作参数的变化而变化,并且从生物反应器中分离出了新型的嗜酸细菌(包括一种硫化物)。嗜酸性的生硫生物反应器提供了原理上的证明,即使用简单的在线系统(可在其中保持受控的pH条件)可分离矿井水中存在的金属。模块化单元用途广泛且坚固耐用,并具有最小的工程复杂性。

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