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Bioremediation of acid mine drainage coupled with domestic wastewater treatment

机译:酸性矿山排水的生物修复结合生活污水处理

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Acid mine drainage (AMD) - characterized by high acidity and elevated sulfate and metal concentrations - represents a big environmental concern. Biological sulfate reduction has become an alternative to the classical physicochemical methods. In this study, domestic wastewater (DW) was tested as a cost-effective carbon-source for the remediation of AMD. Sediments from Tinto River, an extreme acidic environment with an elevated concentration of metals, were used as inoculum. Three anaerobic bioreactors with different microbial supports were fed with a 1:10 (v:v) mixture of synthetic AMD:DW. Around 50% of the organic matter present in the DW co-precipitated with the metals from the AMD previous to feeding the reactor. Therefore, the reactors had to be supplemented with an extra carbon - source (acetate) to achieve higher S elimination. Elevated removal efficiencies of chemical oxygen demand (COD) (>88%), sulfate (>75%), Fe (>85%) and other dissolved metals (>99% except for Mn) were achieved. Bacterial communities were examined through denaturing gradient gel electrophoresis and scanning electron microscopy. Higher biodiversity was found in the bioreactors compared with that of the inoculum. Dominant species belong to two metabolic groups: fermentative (Clostridium spp., Delftia spp., Paludibacter spp. and Pelotomaculum spp.) and sulfate - reducing bacteria (Desulfomonile spp., Desulfovibrio spp., Desulfosporosinus spp. and Desulfotomaculum spp.).
机译:酸性矿山排水(AMD)具有高酸度,硫酸盐和金属浓度升高的特点,这引起了人们极大的环境关注。硫酸盐生物还原已成为经典物理化学方法的替代方法。在这项研究中,对生活污水(DW)进行了测试,认为它是一种用于修复AMD的经济有效的碳源。来自Tinto河的沉积物被用作接种物,Tinto河的沉积物是一种极端酸性环境,金属浓度较高。将具有不同微生物支持物的三个厌氧生物反应器喂入合成AMD:DW的1:10(v:v)混合物。 DW中存在的有机物中约有50%在进料反应器之前与AMD的金属共沉淀。因此,反应器必须补充额外的碳源(乙酸盐)以实现更高的S消除率。实现了提高的化学需氧量(COD)(> 88%),硫酸盐(> 75%),Fe(> 85%)和其他溶解金属(Mn除外)> 99%的去除效率。通过变性梯度凝胶电泳和扫描电子显微镜检查细菌群落。与接种物相比,在生物反应器中发现了更高的生物多样性。占优势的物种分为两个代谢类:发酵型(梭菌属,德尔夫特氏菌,Paludibacter菌和Pelotomaculum菌)和硫酸盐还原菌(Desulfomonile菌,Desulfovibrio菌,Desulfosporosinus spp。和Desulfotomaculus)。

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