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Reduction of bromate in a biological activated carbon filter under high bulk dissolved oxygen conditions and characterization of bromate-reducing isolates

机译:在高体积溶解氧条件下,生物活性炭过滤器中的溴酸盐还原以及溴酸盐还原分离物的表征

摘要

A biological activated carbon (BAC) filter was constructed using BAC from a pilot system that exhibited the ability to reduce bromate (BrO3-) and two BrO3--reducing bacteria were isolated and characterized. The BAC filter could almost completely reduce BrO3- (60 mu Br/L) to bromide (Br-) at an influent dissolved oxygen (DO) level of approximately 8.0 mg/L and an empty bed contact time of 30 +/- 2 min using acetate as the electron donor shortly after the start-up. Phylogenetic analysis of the 16S rRNA gene sequences of a biological sample from the BAC filter showed that among the six detected orders, Rhodocyclales- and Burkholderiales-related microorganisms were dominant and Rhodocyclaceae- and Comamonadaceae-related microorganisms may play a role in BrO3- reduction. Two isolated pure cultures, i.e.Sphingomonas sp. 4721 and Deinococcus sp. 4710, exhibited the ability to reduce BrO3- in the presence of NO3-. The result of this study clearly indicated that DO was a competitor of BrO3- as an electron acceptor while NO3- was not. Construction of a BAC filter which could restrict oxygen transfer within a biofilm still remains to be a challenge. (c) 2012 Elsevier B.V. All rights reserved.
机译:使用中试系统中的BAC构建了生物活性炭(BAC)过滤器,该系统具有还原溴酸盐(BrO3-)的能力,并且可以分离并鉴定出两种减少BrO3的细菌。在进水溶解氧(DO)约为8.0 mg / L和空床接触时间为30 +/- 2分钟的情况下,BAC过滤器几乎可以将BrO3-(60μBr / L)几乎完全还原为溴化物(Br-)。启动后不久,使用乙酸盐作为电子供体。对来自BAC过滤器的生物样品的16S rRNA基因序列进行系统进化分析表明,在检测到的六个顺序中,与杜鹃花和伯克霍尔德里亚斯相关的微生物占优势,而与杜鹃花科和Comamonadaceae相关的微生物可能在减少BrO3-中起作用。两种分离的纯培养物,即鞘氨醇单胞菌sp。 4721和Deinococcus sp。 4710在NO3-存在下具有还原BrO3-的能力。这项研究的结果清楚地表明,DO是BrO3-作为电子受体的竞争者,而NO3-不是。可以限制氧气在生物膜内转移的BAC过滤器的构造仍然是一个挑战。 (c)2012 Elsevier B.V.保留所有权利。

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