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Treatment of real flue gas desulfurization wastewater in an autotrophic biocathode in view of elemental sulfur recovery: Microbial communities involved

机译:鉴于元素硫的回收,在自养生物阴极中处理实际烟道气脱硫废水:涉及的微生物群落

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Sulfur oxide emissions can lead to acidic precipitation and health concerns. Flue gas desulfurization (FGD) systems treat these emissions generating a wastewater with high-sulfate content. This work is the first attempt to treat this effluent with bioelectrochemical systems (BES) in order to recover elemental sulfur, a technology that allows the treatment of several wastewaters that lack of electron donor. The sulfate treatment and elemental sulfur recovery have been studied in a biocathode with simultaneous sulfate reduction to sulfide and partial sulfide oxidation, comparing the performance obtained with synthetic and real wastewater. A decrease of the sulfate removal rate (SRR) from 108 to 73 mg S-SO42- L-1 d(-1) was observed coupled to an increase in the elemental sulfur recovery from 1.4 to 27 mg S-S-0 L-1 d(-1). This elemental sulfur recovered as a solid from the real wastewater represented a 64% of the theoretical elemental sulfur produced (the elemental sulfur corresponded to a 72% of the solid weight). In addition, microbial communities analysis of the membrane and cathode biofilms and planktonic biomass showed that the real wastewater allowed a higher growth of sulfur oxidizing bacteria (SOB) adapted to more complex waters as Halothiobacillus sp. while decreasing the relative abundance of sulfate reducing bacteria (SRB). (C) 2018 Elsevier B.V. All rights reserved.
机译:氧化硫的排放会导致酸性沉淀和健康问题。烟气脱硫(FGD)系统处理这些排放物,从而产生高硫酸盐含量的废水。这项工作是首次尝试使用生物电化学系统(BES)处理这种废水以回收元素硫,该技术可以处理多种缺乏电子给体的废水。在生物阴极中研究了硫酸盐处理和元素硫的回收,同时将硫酸盐还原为硫化物和部分硫化物氧化,比较了合成废水和实际废水的性能。观察到硫酸盐去除率(SRR)从108降低到73 mg S-SO42-L-1 d(-1),同时元素硫的回收率也从1.4 mg升高到27 mg SS-0 L-1 d。 (-1)。从实际废水中以固体形式回收的元素硫占理论生产的元素硫的64%(元素硫相当于固体重量的72%)。此外,对膜和阴极生物膜以及浮游生物质的微生物群落分析表明,实际废水允许硫氧化细菌(SOB)的生长更高,从而适合于更复杂的水域,如Halothiobacillus sp。同时降低硫酸盐还原菌(SRB)的相对丰度。 (C)2018 Elsevier B.V.保留所有权利。

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