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Effect of wastewater COD/N ratio on aerobic nitrifying sludge granulation and microbial population shift

机译:废水COD / N比对好氧硝化污泥颗粒化和微生物种群迁移的影响

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摘要

The effect of COD/N ratio on the granulation process and microbial population succession was investigated. Four identical sequencing batch reactors, R1, R2, R3 and R4, were operated with various initial COD/N ratios ranging from 0/200 to 800/200 (m/m). Ethanol was fed as the source of COD. Aerobic granules were successfully cultivated in R2 and R3, operating with the COD/N ratio of 200/200 and 400/200, respectively. Scanning electron microscope observations indicated that short rod-shaped and spherical bacteria were dominant in R2, while granules produced in R3 were surrounded with a large amount of filamentous bacteria. The average specific nitritation rate in R2 and R3 were 0.019 and 0.008 mg N/(mg MLVSS·hr), respectively. Fluorescence in situ hybridization results demonstrated that nitrifying bacteria population was enriched remarkably in R2. It indicated that nitrification ability and nitrifying bacteria population were enriched remarkably at low COD/N ratio. However, no granules were formed in R1 and R4 which might attribute to either limited or excessive extracellular polymeric substances production. This study contributed to a better understanding of the role of COD/N ratio in nitrifying sludge granulation.
机译:研究了COD / N比对制粒过程和微生物种群演替的影响。四个相同的顺序分批反应器R1,R2,R3和R4在0/200至800/200(m / m)的各种初始COD / N比下运行。乙醇作为COD的来源。在R2和R3中成功培养了好氧颗粒,其COD / N比率分别为200/200和400/200。扫描电子显微镜观察表明,在R2中短杆状和球形细菌占优势,而在R3中产生的颗粒被大量丝状细菌包围。 R2和R3中的平均比硝化率分别为0.019和0.008mg N /(mg MLVSS·hr)。荧光原位杂交结果表明,硝化细菌群体在R2中显着富集。结果表明,低COD / N比时硝化能力和硝化细菌数量明显增加。然而,在R1和R4中没有形成颗粒,这可能归因于细胞外聚合物质产量有限或过量。这项研究有助于更好地了解COD / N比在硝化污泥颗粒化中的作用。

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