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Metabolic versatility in full-scale wastewater treatment plants performing enhanced biological phosphorus removal

机译:具有增强的生物除磷功能的大型污水处理厂的代谢多功能性

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This study analysed the enhanced biological phosphorus removal (EBPR) microbial community and metabolic performance of five full-scale EBPR systems by using fluorescence in situ hybridisation combined with off-line batch tests fed with acetate under anaerobic-aerobic conditions. The phosphorus accumulating organisms (PAOs) in all systems were stable and showed little variability between each plant, while glycogen accumulating organisms (GAOs) were present in two of the plants. The metabolic activity of each sludge showed the frequent involvement of the anaerobic tricarboxylic acid cycle (TCA) in PAO metabolism for the anaerobic generation of reducing equivalents, in addition to the more frequently reported glycolysis pathway. Metabolic variability in the use of the two pathways was also observed, between different systems and in the same system over time. The metabolic dynamics was linked to the availability of glycogen, where a higher utilisation of the glycolysis pathway was observed in the two systems employing side-stream hydrolysis, and the TCA cycle was more active in the A~2O systems. Full-scale plants that showed higher glycolysis activity also exhibited superior P removal performance, suggesting that promotion of the glycolysis pathway over the TCA cycle could be beneficial towards the optimisation of EBPR systems.
机译:这项研究通过使用荧光原位杂交技术结合厌氧-好氧条件下的醋酸酯脱机分批测试,分析了五个完整规模的EBPR系统的增强的生物除磷(EBPR)微生物群落和代谢性能。在所有系统中,磷累积生物(PAO)稳定且每株植物之间几乎没有变异,而其中两株植物则存在糖原累积生物(GAO)。除更频繁报道的糖酵解途径外,每种污泥的代谢活性均显示厌氧三羧酸循环(TCA)经常参与PAO代谢,以产生厌氧还原当量。在不同系统之间以及同一系统中,随着时间的推移,还观察到了两种途径的使用中的代谢变异性。代谢动力学与糖原的有效性有关,在使用侧流水解的两个系统中,糖酵解途径的利用率更高,而TCA循环在A〜2O系统中更为活跃。显示较高糖酵解活性的全规模植株也表现出优异的P去除性能,表明在TCA循环中促进糖酵解途径可能有利于EBPR系统的优化。

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