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Bacterial community dynamics and its effects during biological activited carbon filter process for drinking water treatment

机译:细菌群落动态及其在饮用水处理中生物活性炭过滤过程中的影响

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A biological activated carbon (BAC) filter was designed for treatment of micro-pollutants in Songhua River. The goal of the study was to characterize bacterial diversity over time and in different spatial regions of the filter and evaluate the effects on BAC performance. The bacterial activity varied over time and the length of the filter. SEM results showed biomass of BAC filter increased during operation and corresponding biological activity reached to 1023.5 (ng ATP g−1 carbon). PCR-DGGE results showed that bacterial composition differed in different spatial regions of the filter and competition between bacterial populations existed. Bacterial dynamics might affect bacterial activity and BAC performance. With bacterial populations reduced, increase of bioactivity, TOC and ammonium removal rate became lower. The phylogenetic results showed BAC filter was colonized by diverse population of bacteria at the end of operation, which played an important role in the performance and reliability of this biofilter system.
机译:设计了一种生物活性炭(BAC)过滤器,用于治疗松花江微污染物。该研究的目标是随着时间的推移和过滤器的不同空间区域表征细菌多样性,并评估对BAC性能的影响。细菌活性随时间变化和过滤器的长度。 SEM结果显示了在操作期间增加了Bac过滤器的生物量,并且相应的生物活性达到1023.5(Ng ATP G -1 / sup>碳)。 PCR-DGGE结果表明,在过滤器的不同空间区域中的细菌组成不同,存在细菌种群之间的竞争。细菌动力学可能影响细菌活性和BAC性能。通过细菌种群减少,生物活性的增加,TOC和铵去除率变低。系统发育结果显示BAC过滤器通过在操作结束时通过不同的细菌群体进行殖民,这在该生物过滤系统的性能和可靠性中起着重要作用。

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