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Microbial iron reduction during passive in situ remediation of an acidic mine pit lake mesocosm

机译:酸性矿井湖中膜被动原位修复过程中的微生物铁还原

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摘要

Ferric iron reduction was studied in a pilot-scale enclosure experiment for passive biological remediation of an acidic mine pit lake in Lusatia, Germany. The metabolic properties of prokaryotes involved in Fe(III) reduction may be important for the outcome of biological remediation, as chemolithotrophic Fe(III) reduction can counteract the desired pH increase, but heterotrophic Fe(III) reduction will provide the necessary Fe(II) for precipitation of sulfide minerals following sulfate reduction. Therefore, vertical profiles of sediment parameters related to iron and sulfur cycling were determined in conjunction with viable counts of different ferric iron-reducing micro-organisms using selective media. Findings were compared to an untreated reference site. The addition of organic matter stimulated ferric iron reduction and sulfate reduction in the enclosure and led to elevated pH and accumulations of ferrous iron and reduced sulfur compounds. Numbers of neutrophilic heterotrophic Fe(III) reducers increased during treatment, those of acidophilic heterotrophic Fe(III) reducers remained similar, and those of acidophilic chemolithotrophic Fe(III) reducers decreased. Zones of ferric ironreducing activity corresponded well with microbial depth profiles; however, viable counts of neutrophilic or acid-tolerant Fe(III) reducers must have been underestimated based on the corresponding observed activity levels. Ferric iron reduction by chemolithotrophic acidophiles seemed to be of minor importance, so a lowering of pH values due to Fe(III) reducing activity is unlikely.
机译:在德国Lusatia的酸性矿井湖中进行被动生物修复的中试封闭试验中研究了铁的还原。 Fe(III)还原涉及的原核生物的代谢特性对于生物修复的结果可能很重要,因为化营养的Fe(III)还原可以抵消所需的pH升高,但是异养的Fe(III)还原将提供必需的Fe(II) ),用于硫酸盐还原后的硫化物矿物沉淀。因此,使用选择性介质,结合不同的铁还原铁微生物的可行计数,确定了与铁和硫循环相关的沉积物参数的垂直剖面。将结果与未处理的参考位点进行比较。有机物的添加刺激了外壳中三价铁的还原和硫酸盐的还原,并导致pH值升高,亚铁的积累和还原的硫化合物。在治疗过程中,嗜中性异养Fe(III)还原剂的数量增加,嗜酸异养Fe(III)还原剂的数量保持相似,而嗜酸性化营养性Fe(III)还原剂的数量减少。铁的还原铁活性区与微生物深度分布非常吻合。但是,必须根据相应观察到的活性水平低估中性或耐酸性Fe(III)还原剂的可行数量。用化营养性嗜酸菌还原三价铁似乎没有多大意义,因此不太可能由于Fe(III)还原活性而降低pH值。

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