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pH值变化对强化生物除磷工艺性能及微生物群落的影响

Effect of pH change on the performance and microbial community of enhanced biological phosphate removal process.

作者信息

Zhang Tong, Liu Yan, Fang Herbert H P

机构信息

Department of Civil Engineering, Environmental Biotechnology Laboratory, The University of Hong Kong, China.

出版信息

Biotechnol Bioeng. 2005 Oct 20;92(2):173-82. doi: 10.1002/bit.20589.

Abstract

An acetate-rich wastewater, containing 170 mg/L of total organic carbon (TOC), 13 mg/L of N, and 15 mg/L of P, was treated using the enhanced biological phosphate removal (EBPR) process operated in a sequencing batch reactor. A slight change of pH of the mixed liquor from 7.0 to 6.5 led to a complete loss of phosphate-removing capability and a drastic change of microbial populations. The process steadily removed 94% of TOC and 99.9% of P from the wastewater at pH 7.0, but only 93% TOC and 17% of P 14 days after the pH was lowered to pH 6.5. The sludge contained 8.8% P at pH 7.0, but only 1.9% at pH 6.5. Based on 16S rDNA analysis, 64.8% of the clones obtained from the sludge at pH 7.0 were absent in the pH 6.5 sludge. The missing microbes, some of which were likely responsible for the phosphate removal at pH 7.0, included beta-Proteobacteria, Actinobacteria, Bacteriodetes/Chlorobi group, plus photosynthetic bacteria and Defluvicoccus of the alpha-Proteobacteria. Among them, the last two groups, which represented 9.3% and 10.1% of the EBPR sludge at pH 7.0, have rarely been reported in an EBPR system.

摘要

采用序批式反应器运行的强化生物除磷(EBPR)工艺处理了一种富含乙酸盐的废水,该废水含有170mg/L的总有机碳(TOC)、13mg/L的氮和15mg/L的磷。混合液的pH值从7.0轻微变化至6.5,导致除磷能力完全丧失以及微生物种群的剧烈变化。在pH值为7.0时,该工艺能稳定地从废水中去除94%的TOC和99.9%的磷,但在pH值降至6.5后14天,只能去除93%的TOC和17%的磷。在pH值为7.0时,污泥含磷量为8.8%,而在pH值为6.5时仅为1.9%。基于16S rDNA分析,在pH值为7.0时从污泥中获得的克隆中有64.8%在pH值为6.5的污泥中不存在。缺失的微生物,其中一些可能是在pH值为7.0时负责除磷的,包括β-变形菌纲、放线菌、拟杆菌/绿菌门,以及光合细菌和α-变形菌纲的Defluvicoccus。其中,后两组在pH值为7.0时分别占EBPR污泥的9.3%和10.1%,在EBPR系统中鲜有报道。

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