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Microbial Diversity in an Iron Oxidation Tank of an AMD Treatment Plant at an Abandoned Sulphur Mine

机译:放弃硫矿的AMD治疗厂的铁氧化罐中的微生物多样性

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This paper describes about microbial diversity in an iron oxidation tank of an AMD treatment plant established at an abandoned sulphur mine in Japan. Since the mining operation was stopped, this mine has produced strong acidic mine drainage, pH 1.8, including a high concentration of ferrous iron, 301mg/L, and the flow rate was about 4m /min. In 2006, a pilot scale microbial iron oxidizing system was installed to remove total iron more easily from the AMD by oxidizing ferrous iron to ferric iron. From the start of this pilot operation, microbial diversity in the iron oxidation tank was investigated using a PCR-DGGE method for about two months. In the PCR, V3 region of 16S rRNA gene for Bacteria was amplified. The profiles of DGGE showed that there were three dominant species in the iron oxidation tank through the experimental period. Number of bands on DGGE profiles decreased with dates of sampling so that the microbial population became less diverse because of the iron oxidizing operation. There was a wide variety of bacterial species of even though conditions were strongly acidic.
机译:本文介绍了在日本一名废弃的硫磺矿的AMD治疗厂的铁氧化罐中的微生物多样性。由于矿井操作停止,该矿井产生了强酸性矿矿矿矿矿矿,pH 1.8,包括高浓度的铁铁,301mg / L,流速约为4m / min。 2006年,安装了试验规模微生物铁氧化系统,通过将铁铁氧化成铁铁,从AMD更容易地从AMD中更容易地除去总铁。从该试验操作的开始,使用PCR-DGGE方法研究铁氧化罐中的微生物多样性约两个月。在PCR中,扩增了16S rRNA基因的V3区域。 DGGE的谱表明,铁氧化罐中有三种主要种类通过实验期。 DGGE配置文件的频带数量随着抽样的日期而降低,因此由于铁氧化操作,微生物群变得较差。即使条件强烈酸性,也有各种各样的细菌种类。

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