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Evaluating the efficiency of carbon utilisation via bioenergetics between biological aerobic and denitrifying phosphorus removal systems

机译:通过生物好氧和反硝化除磷系统之间的生物能学评估碳利用效率

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摘要

There are two biological systems available for removing phosphorus from waste water, conventional phosphorus removal (CPR) and denitrifying phosphorus removal (DPR) systems, and each is characterized by the type of sludge used in the process. In this study, we compared the characteristics associated with the efficiency of carbon utilization between CPR and DPR sludge using acetate as a carbon source. For DPR sludge, the heat emitted during the phosphorus release and phosphorus uptake processes were 45.79 kJ/mol e- and 84.09 kJ/mol e-, respectively. These values were about 2 fold higher than the corresponding values obtained for CPR sludge, suggesting that much of the energy obtained from the carbon source was emitted as heat. Further study revealed a smaller microbial mass within the DPR sludge compared to CPR sludge, as shown by a lower sludge yield coefficient (0.05 gVSS/g COD versus 0.36 gVSS/g COD), a result that was due to the lower energy capturing efficiency of DPR sludge according to bioenergetic analysis. Although the efficiency of anoxic phosphorus removal was only 39% the efficiency of aerobic phosphorus removal, the consumption of carbon by DPR sludge was reduced by 27.8% compared to CPR sludge through the coupling of denitrification with dephosphatation.
机译:有两种生物系统可用于去除废水中的磷,传统的除磷(CPR)系统和反硝化的除磷(DPR)系统,每种系统均以该过程中使用的污泥类型为特征。在这项研究中,我们比较了使用乙酸盐作为碳源的CPR和DPR污泥之间与碳利用效率相关的特征。对于DPR污泥,磷释放和吸收磷过程中散发的热量分别为45.79 kJ / mol e -和84.09 kJ / mol e -。这些值比CPR污泥获得的相应值高约2倍,表明从碳源获得的大部分能量都以热量的形式散发。进一步的研究表明,与CPR污泥相比,DPR污泥中的微生物质量更小,这表现为更低的污泥产率系数(0.05 gVSS / g COD对0.36 gVSS / g COD),这是由于较低的能量捕获效率所致根据生物能分析得出的DPR污泥。尽管缺氧除磷效率仅为需氧除磷效率的39%,但DPR污泥的碳消耗量比CPR污泥通过脱氮与脱磷相结合而减少了27.8%。

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