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Effect of side-stream phosphorus recovery on biological phosphorus removal performance investigated by chemical and microbial analyses in a novel BNR-IC process

机译:在新型BNR-IC工艺中通过化学和微生物分析研究侧流磷回收对生物除磷性能的影响

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The aim of this study was to assess the effect of side-stream ratio (SSR) on performance of phosphorus (P) removal and recovery in a novel process linking biological nutrients removal (BNR) and induced crystallization (IC). Results showed that P removal efficiency was significantly enhanced when given an appropriate SSR, resulting in effluent P concentrations decreasing from 0.75 to 0.39 mg/L with an increase of SSR from 0 to 35%, where a maximum of 7.19 mg/L P recovery amount was obtained at 35% of SSR. Increasing the SSR can favor the P recovery, while an excessively high SSR (more than 35%) would have a negative effect on the subsequent biological P removal in the BNR-IC system. Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) analysis showed that in total, 11 DGGE bands of highest species richness were visually detected and significant changes in microbial community structure were found, with SSR variations ranging from 0 to 55%. Moreover, an increase in SSR can cause an increase in microbial community biodiversity; where microbial populations correspond to the 11 bands, they were generally classified into five different phyla or classes (Beta-, Gamma-, and Deltaproteobacteria, as well as Clostridia and Flavobacteria) based on the evolutionary tree analysis.
机译:这项研究的目的是评估连接生物营养物去除(BNR)和诱导结晶(IC)的新工艺中,侧流比(SSR)对磷(P)去除和回收性能的影响。结果表明,给予适当的SSR后,磷的去除效率会显着提高,导致废水中P的浓度从0.75降至0.39 mg / L,SSR从0升高至35%,最大回收率为7.19 mg / LP。以SSR的35%获得。增加SSR可以促进P的回收,而过高的SSR(超过35%)会对随后在BNR-IC系统中去除生物P产生负面影响。聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)分析表明,总共可见到11种物种丰富度最高的DGGE条带,并且发现微生物群落结构发生了显着变化,SSR的变化范围为0至55%。此外,SSR的增加可能导致微生物群落生物多样性的增加;在微生物种群对应于11个条带的情况下,根据进化树分析,它们通常分为五个不同的门或类别(β,γ和Delta变形杆菌,以及梭状芽胞杆菌和黄杆菌)。

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