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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Investigation of mineralogical and bacteria diversity in Nanxi River affected by acid mine drainage from the closed coal mine: Implications for characterizing natural attenuation process
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Investigation of mineralogical and bacteria diversity in Nanxi River affected by acid mine drainage from the closed coal mine: Implications for characterizing natural attenuation process

机译:南西河矿物学和细菌多样性调查临床煤矿煤矿矿井影响:对自然衰减过程进行特征的影响

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摘要

Due to the supply-side reform and environmental protection in China, many small coal mines have been closed since 2015. However, acid mine drainage from these coal mines are continuously discharging into many rural creeks, which requires the systematical investigation on the variations of geochemical and environmental biological aspects in these water systems. In this study, from a classic acid mine drainage (AMD) from a closed coalmine of Hunan, China, various sediments and water samples in different sections were collected and analyzed. According to the corresponding Mineralogical and simple bacterial characteristics analysis (16S rRNA gene sequencing), the main findings were: 1) Secondary iron-containing minerals gradually transited from Gr(CO32-) (green rust), Sh (schwertmannite) to Akg (Akaganeite) and more stable Gt (Goethite); 2) compared to the pristine sediment, these minerals decreased the acid-neutralizing capacity and cation exchange capacity (CEC) of sediments; 3) Proteobacteria and Firmicutes were the dominant phyla and the obvious variation of Firmicutes species was observed in the creek affected by AMD, which probably could been a biological index to diagnose the natural attenuation of AMD. These results could be greatly significant to understand typical variations of creek attenuation and bacterial community in the presence of high metal and sulfate concentration. (C) 2019 Published by Elsevier B.V.
机译:由于中国的供方改革和环保,许多小煤矿被关闭,因为这些煤矿2015年。然而,酸性矿山废水不断排入许多农村小溪,这需要对地球化学变化的系统调查和环境生物学方面的这些水系统。在这项研究中,来自中国湖南,各种沉积物和在不同的部分水样的封闭煤矿的经典酸性矿山废水(AMD)的收集和分析。根据相应的矿物学和简单的细菌特性分析(16S rRNA基因测序),主要发现是:1)从次级的Gr(CO32-)(绿锈),SH(施威特曼石)到AKG逐步过渡矿物含铁(Akaganeite )和更稳定的GT(针铁矿); 2)相对于原始的沉淀物,这些矿物质降低酸中和能力和沉积物的阳离子交换容量(CEC); 3)变形菌和厚壁菌门为优势门类,观察厚壁菌门种类的明显变化小溪受AMD,这可能会被诊断AMD的自然衰减的生物指标。这些结果可能是大大显著了解高的金属和硫酸盐浓度的存在小溪衰减和细菌群落的典型变化。 (c)2019年由elestvier b.v发布。

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