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Potential of direct interspecies electron transfer in synergetic enhancement of methanogenesis and sulfate removal in an up-flow anaerobic sludge blanket reactor with magnetite

机译:直接梭菌电子转移的潜力在甲烷中的甲烷化增强和硫酸盐去除中的硫酸盐碎片反应器与磁铁矿

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Anaerobic digestion (AD) has been widely applied in the treatment of industrial wastewater containing oxidized sulfur compounds. However, the production of hydrogen sulfide usually limits the syntrophic metabolism proceeded by interspecies hydrogen transfer (IHT), due to its corrosive and toxic properties. The current study was in an attempt to establish direct interspecies electron transfer (DIET) to resist the toxic inhibition from hydrogen sulfide and keep syntrophic metabolism stable. The results showed that, in the presence of magnetite, the methane production was improved about 3-10 folds at each ratio of COD/SO42, while the enhancement of methanogenesis had almost no negative effect on sulfate reduction. With magnetite, the sludge conductance increased about 3 folds, but the concentration of c-type cytochromes decreased, suggesting that the potential DIET via both electrically conductive pili and outer surface c-type cytochromes was established. Microbial community revealed that, Veillonella species, the Fe(III)-reducing genus capable of reducing sulfate to hydrogen sulfide, were specially enriched with magnetite. Together with the relatively higher abundance of Methanothrix and Methanosarcina species, the novel DIET between Fe(III)/sulfate-reducing genus and methanogens was inferred to be responsible for the synergetic enhancement of methanogenesis and sulfate removal. (C) 2019 Elsevier B.V. All rights reserved.
机译:厌氧消化(AD)已广泛应用于处理含有氧化硫化合物的工业废水。然而,由于其腐蚀性和毒性,硫化氢的产生通常限制氢转移(IHT)的型氢转移(IHT)进行的语言代谢。目前的研究旨在建立直接的梭菌电子转移(饮食)来抵抗硫化氢的毒性抑制,并保持稳定的稳定性代谢。结果表明,在磁铁矿存在下,甲烷产量在COD / SO42的每个比例下提高3-10倍,而甲烷发生的增强几乎没有对硫酸盐还原的负面影响。通过磁铁矿,污泥电导增加约3倍,但C型细胞色素的浓度降低,表明通过导电菌毛和外表面C型细胞变色的潜在饮食。微生物群落揭示了Veillonella物种,能够将硫酸盐还原到硫化氢的Fe(III)-READING的属,用磁铁矿富集。推断出Fe(III)/硫酸盐还原属和甲酸乙酯之间具有相对较高的甲蛋白纤维和甲蛋白酶物种的饮食,以负责甲烷化的协同增强和去除硫酸盐。 (c)2019 Elsevier B.v.保留所有权利。

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