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Effect of the Concentration Balance in Feeding Solutions on EBPR Performance of a Sequencing Batch Reactor Fed with Sodium Acetate or Glucose

机译:进料溶液中的浓度平衡对以乙酸钠或葡萄糖为原料的测序分批反应器的EBPR性能的影响

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摘要

In earlier studies in the existing literature, concentration balance in the feeding solution has never been considered as an influencing factor when the studies were carried out under several feeding conditions to examine effects of different carbon sources on the enhanced biological phosphorus removal (EBPR) process. For a better understanding of a stable operation of an EBPR reactor, it is thought that effects of the concentration balance need to be combined and evaluated with effects of the type of carbon sources in EBPR studies. Therefore, this study was aimed at determining the effect of concentration balance on the performance stability and the phosphorus and glycogen dynamics of a sequencing batch reactor (SBR). In this study, the SBR operation was divided into two main stages. In the first stage, two different ratios of the total concentration of monovalent (M) to divalent (D) cations (in milliequivalent per liter, meq/L) (7.6 and 1.5, 30 days of operation for each) was applied in the feeding solution to investigate the effect of the concentration balance on the performance stability of the SBR. During this stage, sodium acetate was used as the sole carbon source. To investigate the effect of the type of carbon source on the EBPR process under the condition of constant M/D ratio, sodium acetate was used as the sole carbon source during the first half of the reactor operation of 120 days, and, then, the carbon source was abruptly switched to glucose in the second stage.
机译:在现有文献的早期研究中,当在几种进料条件下进行研究以检查不同碳源对增强生物除磷(EBPR)过程的影响时,进料溶液中的浓度平衡从未被视为影响因素。为了更好地理解EBPR反应器的稳定运行,认为在EBPR研究中需要将浓度平衡的影响与碳源类型的影响结合起来并进行评估。因此,本研究旨在确定浓度平衡对测序间歇反应器(SBR)的性能稳定性以及磷和糖原动力学的影响。在这项研究中,SBR操作分为两个主要阶段。在第一阶段中,将两种不同比例的一价(M)与二价(D)阳离子的总浓度(以每毫升毫当量,meq / L计)(分别为7.6和1.5,运行30天)解决方案,以研究浓度平衡对SBR性能稳定性的影响。在此阶段,乙酸钠被用作唯一的碳源。为了研究在恒定M / D比的条件下碳源类型对EBPR过程的影响,在反应器运行的前半段120天中,乙酸钠用作唯一的碳源,然后,第二阶段,碳源突然转换为葡萄糖。

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