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Potential risk and control strategy of biofilm pretreatment process treating raw water

机译:生物膜预处理工艺处理原水的潜在风险和控制策略

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An enhanced lab-scale biofilm pretreatment process treating raw water obtained from eutrophicated water bodies was established and started up with a novel strategy of low-level nutrients addition and effluent recirculation. Results showed that the startup strategy was useful for biofilm formation and pollutants removal, but it had the risks of increasing substrate affinity constant (K-s) and biofilm decay in treating raw water. Fortunately, the increased Ks value did not affected the NH4+-N removal performance via keeping the NH4+-N loading rate larger than 6.29 mg L-1 d(-1). In addition, lower hydraulic retention time (HRT) favored the removal of organic matters, and the maximum TOC removal rate of 76.5 mg L-1 d(-1) were achieved at HRT of 2 h. After long-term acclimatization at oligotrophic niche, the decrease of Ks value and increase of biomass, extracellular polymeric substances, bioactivity were achieved. Finally, the stable operation of biofilm pretreatment process was realized in treating polluted raw water. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立了增强的实验室规模生物膜预处理工艺,用于处理从富营养化水体获得的原水,并采用了低水平养分添加和废水再循环的新策略来启动。结果表明,该启动策略对于生物膜的形成和污染物的去除很有用,但是在处理原水时,存在增加底物亲和常数(K-s)和生物膜衰减的风险。幸运的是,增加的Ks值不会通过保持NH4 + -N的加载速率大于6.29 mg L-1 d(-1)来影响NH4 + -N的去除性能。另外,较低的水力停留时间(HRT)有利于有机物的去除,在HRT为2 h时,最大TOC去除率达到76.5 mg L-1 d(-1)。在贫营养生态位长期适应后,Ks值降低,生物量,细胞外聚合物,生物活性增加。最终,实现了生物膜预处理工艺在污水处理中的稳定运行。 (C)2015 Elsevier Ltd.保留所有权利。

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