The roles of loosely-bound and tightly-bound extracellular polymer substances in enhanced biological phosphorus removal

强化生物除磷 胞外聚合物 活性污泥 化学 细胞外 无氧运动 微生物学 细菌 生物化学 污水处理 生物 环境工程 生物膜 生理学 环境科学 有机化学 遗传学
作者
Xiangyu Long,Ran Tang,Zhendong Fang,Chaoxin Xie,Yongqin Li,Guang Xian
出处
期刊:Chemosphere [Elsevier]
卷期号:189: 679-688 被引量:48
标识
DOI:10.1016/j.chemosphere.2017.09.067
摘要

Extracellular polymeric substances (EPS) have be founded to participate in the process of enhanced biological phosphorus removal (EBPR), but the exact role of EPS in EBPR process is unclear. In this work, the roles of loosely-bound EPS (LB-EPS), tightly-bound EPS (TB-EPS) and microbial cell in EBPR were explored, taking the activated sludge from 4 lab-scale A/O-SBR reactors with different temperatures and organic substrates as objects. It was founded that the P of EBPR activated sludge was mainly stored in TB-EPS, but the P of non-EBPR activated sludge was primarily located in microbial cell. The P release and uptake of EBPR activated sludge was attributed to the combined action of TB-EPS and microbial cell. Furthermore, TB-EPS played an more important role than microbial cell in EBPR process. With the analysis of 31P NMR spectroscopy, both polyP and orthoP were the main phosphorus species of TB-EPS in EBPR sludge, but only orthoP was the main phosphorus species of LB-EPS and microbial cell. During the anaerobic-aerobic cycle, the roles of LB-EPS, TB-EPS and microbial cell in transfer and transformation of P in EBPR sludge were obviously different. LB-EPS transported and retained orthoP, and microbial cell directly anaerobically released or aerobically absorbed orthoP. Importantly, TB-EPS not only transported and retained orthoP, but also participated in biological phosphorus accumulation. The EBPR performance of sludge was closely related with the polyp in TB-EPS, which might be synthesized and decomposed by extracellular enzyme.

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