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Bacterial and chemical oxidation of pyritic mine tailings at low temperatures

机译:低温下黄铁矿尾矿的细菌和化学氧化

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Microbial and chemical sulfide oxidation activity and oxygen consumption was investigated in the active layer of pyritic mine tailings at Nanisivik Mine, located in a permafrost area on Baffin Island in northern Canada. Samples of tailings were collected up to a depth of 60 cm in mid-August 1998 at 4 sites, for which the metabolic activity of sulfur- and iron-oxidizing leaching bacteria besides the chemical pyrite oxidation activity were measured on 39 tailings samples and 7 samples from a natural pyritic site by calorimetry. The tailings of varying age and water content were deposited under alkaline conditions. In situ oxygen uptake rates were measured at the tailings surface every third day, prior to sampling. In addition, cell counts of iron(II), sulfur, and thiosulfate oxidizing, lithotrophic bacteria and chemoorganotrophic microorganisms were deter- mined quantitatively by the most--probable--number technique or by agar-plating. Results show consistent pyrite oxidation rates based on in situ oxygen uptake rates, and laboratory heat output measurements. Litho-- and organotrophic bacteria were found in the tailings. Calorimetric measure- ments revealed that the present bacterial activity is responsible for approximately one third of the ongoing oxidation. Although leaching bacteria have previously been found in the Arctic, this study is the first to prove the significance of bacterial activity in the overall pollution resulting from tailings deposited in the Arctic.
机译:在加拿大北部巴芬岛多年冻土区的Nanisivik矿,在黄铁矿尾矿的活性层中研究了微生物和化学硫化物的氧化活性和耗氧量。于1998年8月中旬在4个地点收集了尾矿样品,深度达60厘米,针对39个尾矿样品和7个样品测量了硫和铁氧化浸出细菌的代谢活性以及化学黄铁矿的氧化活性。通过量热法从天​​然黄铁矿中提取。不同年龄和含水量的尾矿在碱性条件下沉积。在取样之前,每三天在尾矿表面测量原位氧气吸收率。另外,铁(II),硫和硫代硫酸盐氧化,石营养细菌和化学有机营养微生物的细胞计数是通过最可能的数技术或琼脂平板法定量测定的。结果显示基于原位氧气吸收率和实验室热量输出测量得出的一致的黄铁矿氧化率。在尾矿中发现了石印和有机营养细菌。量热法测量表明,目前的细菌活性约占正在进行的氧化反应的三分之一。尽管先前已在北极发现浸出细菌,但这项研究首次证明了细菌活动在沉积在北极的尾矿造成的总体污染中的重要性。

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