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The feasibility of enhanced biological phosphorus removal in the novel oxic/extended idle process using fermentation liquid from sludge fermentation

机译:使用污泥发酵中的发酵液在新型的有氧/扩展闲置过程中提高生物除磷的可行性

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Carbon sources are essential for biological phosphorus removal (BPR); the carbon sources, however, are often inadequate in municipal wastewater treatment plants. This study demonstrated the feasibility of sludge fermentation liquid enhanced by biosurfactant alkylpolyglycosides (APG) as carbon sources to improve the performance of BPR in the novel oxic/extended idle (O/EI) reactor and the underlying mechanism was also investigated. The results showed that APG induced fermentation liquid could enhance the BPR performance in the O/EI reactor, and the BPR efficiency was 95.2%, which was significantly higher than that in the conventional anaerobic/oxic (A/O) reactor. Mechanism investigation showed that compared with the A/O reactor, the O/EI reactor enriched more polyphosphate accumulating organisms (PAOs) (38.2%), but less glycogen accumulating organisms (GAOs) when the APG-induced fermentation liquid was used as carbon source. The transformations of the polyhydroxyalkanoates (PHA) and glycogen in the O/EI reactor were lower than those in the A/O reactor. Further study found that the activities of polyphosphate kinase (PPK) and acetyl-CoA synthases (ACS) in the O/EI reactor were significantly higher than those of the A/O reactor, which was consistent with the higher BPR efficiency in the O/EI reactor.
机译:碳源对于生物除磷(BPR)是必不可少的;然而,市政废水处理厂的碳源通常不足。这项研究表明生物表面活性剂烷基多糖苷(APG)作为碳源增强污泥发酵液的可行性,以改善新型氧化/扩展闲置(O / EI)反应器中BPR的性能,并研究了其潜在机理。结果表明,APG诱导的发酵液可以提高O / EI反应器的BPR性能,BPR效率为95.2%,明显高于常规厌氧/氧(A / O)反应器。机理研究表明,与A / O反应器相比,当APG诱导的发酵液用作碳源时,O / EI反应器富集了更多的多磷酸盐累积生物(PAO)(38.2%),但是糖原累积生物(GAO)较少。 。 O / EI反应器中的聚羟基链烷酸酯(PHA)和糖原的转化率低于A / O反应器中的转化率。进一步的研究发现,O / EI反应器中的多磷酸激酶(PPK)和乙酰辅酶A合成酶(ACS)的活性显着高于A / O反应器,这与O / EI反应器中更高的BPR效率是一致的EI反应堆。

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