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Desulfosporosinus spp. were the most predominant sulfate-reducing bacteria in pilot- and laboratory-scale passive bioreactors for acid mine drainage treatment

机译:脱硫孢子素SPP。 是用于酸性矿山排水处理的试验和实验室级被动生物反应器中最主要的硫酸盐降低细菌

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摘要

Five types of sulfate-reducing passive bioreactors with rice bran as substrate were operated at three different mine sites under various operating conditions to investigate and compare the dominant sulfate-reducing bacteria (SRBs) involved in acid mine drainage (AMD) treatment. In all bioreactors, AMD was properly treated under the national effluent standard of Japan when 16 samples in total were taken from different depths of the bioreactors at different sampling times. Analysis of the microbiomes in the five bioreactors by Illumina sequencing showed that Desulfosporosinus spp. were dominant SRBs in all bioreactors (the relative abundances were similar to 26.0% of the total population) regardless of reactor configurations, sizes, and operating conditions. This genus is known to comprise spore-forming, acid-tolerant, and oxygen-resistant SRBs with versatile metabolic capabilities. Microbial populations of AMD water and soil samples (as inocula) from the respective mine sites were also analyzed to investigate the origin of the genus Desulfosporosinus. Desulfosporosinus spp. were detectable in most AMD water samples, even at low relative abundances (0.0025 to 0.0069% of total AMD population), suggesting that the genus Desulfosporosinus is present within the AMD water that flows into the bioreactor. These data strongly imply that the passive treatment system is a versatile and widely applicable process for AMD treatment.
机译:在各种操作条件下,在三种不同的矿部位下在三种不同的矿位部位运行五种硫酸盐减少硫酸盐的无源生物反应器,以研究和比较参与酸性矿物排水(AMD)处理的主要硫酸盐还原细菌(SRB)。在所有生物反应器中,当在不同的采样时间的生物反应器的不同深度中取出16个样品时,AMD在日本的国家流出标准下适当地处理。 Illumina测序的五个生物反应器中微生物分析显示了脱硫孢子素SPP。无论反应器配置,尺寸和操作条件如何,所有生物反应器都是占所有生物反应器的占优势性SRB(相对丰富的相似性)。已知该属包括具有多功能代谢能力的孢子形成,耐酸和抗抗氧SRB。还分析了来自各种矿位点的AMD水和土壤样品的微生物群(作为锯齿状)以研究脱硫属的来源。脱硫孢子素SPP。在大多数AMD水样中可检测到,即使在低相对丰富(0.0025至0.0069%的总AMD群体),表明脱硫属地存在于流入生物反应器的AMD水中。这些数据非常暗示,无源处理系统是AMD治疗的多功能和广泛适用的方法。

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