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Microbiology and geochemistry of mine tailings amended with organic carbon for passive treatment of pore water

机译:有机碳修饰矿山尾矿的微生物学和地球化学,用于被动处理孔隙水

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A field-scale experiment was conducted to evaluate organic carbon amendment of mine tailings as a technique for pore water and drainage treatment. Six test cells were constructed by amending sulfide- and carbonate-rich tailings with varied mixtures of peat spent-brewing grain and municipal biosolids. Samples were collected for microbial geochemical and mineralogical analysis approximately three years after commencing this experiment. Test cells amended with spent-brewing grain promoted sulfate reduction and effective removal of sulfate and metal(loid)s. The addition of municipal biosolids did not sustain enhanced sulfidogenesis after three years and peat was an ineffective source of organic carbon. Terminal-restriction fragment length polymorphism revealed that test cells which supported sulfidogenesis exhibited the greatest microbial diversity. Indigenous bacteria identified using molecular and cultivation analyses were found to be related to Cellulomonas Thiobacillus Bacteroides Paludibacter and Desulfovibrio which was the only sulfate-reducing bacterial (SRB) isolated. The results demonstrate that mixtures of solid organic materials which supported complex anaerobic microbial communities including sulfate-reducing bacteria were most effective in promoting porewater treatment.
机译:进行了田间规模的实验,以评估矿山尾矿的有机碳改良作为孔隙水和排水处理的技术。通过用泥炭废酿谷物和市政生物固体的各种混合物修正富含硫化物和碳酸盐的尾矿,构建了六个测试单元。开始这项实验大约三年后,收集样品进行微生物地球化学和矿物学分析。用废酒糟改良的测试细胞促进了硫酸盐的还原并有效去除了硫酸盐和金属(金属)。三年后,添加市政生物固体并不能维持增强的硫化作用,而泥炭是无效的有机碳来源。末端限制性片段长度多态性表明,支持硫化生成的测试细胞表现出最大的微生物多样性。通过分子和培养分析鉴定出的土著细菌被发现与纤维单胞杆菌拟硫杆菌Paludibacter和Desulfovibrio有关,这是唯一分离出的硫酸盐还原细菌(SRB)。结果表明,支持复杂厌氧微生物群落(包括硫酸盐还原菌)的固体有机物质的混合物在促进孔隙水处理方面最有效。

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