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Reduction of bromate by biogenic sulfide produced during microbial sulfur disproportionation

机译:微生物硫歧化过程中产生的生物硫化物还原溴酸盐

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Bromate (BrO ) is a carcinogenic contaminant formed during ozonation of waters that contain trace amounts of bromide. Previous research shows that bromate can be microbially reduced to bromide using organic (i.e. acetate, glucose, ethanol) and inorganic (H) electron-donating substrates. In this study, the reduction of bromate by a mixed microbial culture was investigated using elemental sulfur (S) as an electron donor. In batch bioassays performed at 30pC, bromate (0.30 mM) was completely converted to bromide after 10 days and no accumulation of intermediates occurred. Bromate was also reduced in cultures supplemented with thiosulfate and hydrogen sulfide as electron donor. Our results demonstrated that S-disproportionating microorganisms were responsible for the reduction of bromate in cultures spiked with S through an indirect mechanism involving microbial formation of sulfide and subsequent abiotic reduction of bromate by the biogenic sulfide. Confirmation of this mechanism is the fact that bromate was shown to undergo rapid chemical reduction by sulfide (but not S or thiosulfate) in abiotic experiments. Bromate concentrations above 0.30 mM inhibited sulfide formation by S-disproportionating bacteria, leading to a decrease in the rate of bromate reduction. The results suggest that biological formation of sulfide from by S disproportionation could support the chemical removal of bromate without having to directly use sulfide as a reagent.
机译:溴酸盐(BrO)是在臭氧化包含痕量溴化物的水期间形成的致癌污染物。先前的研究表明,使用有机(即醋酸盐,葡萄糖,乙醇)和无机(H)给电子底物可以将溴酸盐微生物还原为溴化物。在这项研究中,使用元素硫(S)作为电子供体,研究了混合微生物培养液对溴酸盐的还原作用。在30pC下进行的分批生物测定中,溴酸盐(0.30 mM)在10天后完全转化为溴化物,并且没有发生中间体积聚。在补充了硫代硫酸盐和硫化氢作为电子供体的培养物中,溴酸盐也被还原。我们的结果表明,S歧化微生物通过间接机制参与了掺入S的培养物中的溴酸盐减少,其中间接机制涉及微生物形成硫化物,随后通过生源性硫化物非生物还原溴酸盐。证实这一机理的事实是,在非生物实验中,溴酸盐被硫化物(但不是S或硫代硫酸盐)快速化学还原。高于0.30 mM的溴酸盐浓度会抑制S歧化细菌形成硫化物,从而导致溴酸盐还原速率降低。结果表明,通过S歧化作用从生物上形成硫化物可以支持化学去除溴酸盐,而不必直接使用硫化物作为试剂。

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