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The difference of morphological characteristics and population structure in PAO and DPAO granular sludges

Authors
Yun, GeumheeLee, HansaemHong, YongsukKim, SungpyoDaigger, Glen T.Yun, Zuwhan
Issue Date
Feb-2019
Publisher
SCIENCE PRESS
Keywords
Accumulibacter phosphatis; Dechloromonas; Granulation; Pyrosequencing; Thauera
Citation
JOURNAL OF ENVIRONMENTAL SCIENCES, v.76, pp.388 - 402
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF ENVIRONMENTAL SCIENCES
Volume
76
Start Page
388
End Page
402
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/67841
DOI
10.1016/j.jes.2018.06.003
ISSN
1001-0742
Abstract
We examined how long-term operation of anaerobic-oxic and anaerobic-anoxic sequencing batch reactors (SBRs) affects the enhanced biological phosphorus removal (EBPR) performance and sludge characteristics. The microbial characteristics of phosphorus accumulating organism (PAO) and denitrifying PAO (DPAO) sludge were also analyzed through a quantitative analysis of microbial community structure. Compared with the initial stage of operation characterized by unstable EBPR, both PAO and DPAO SBR produced a stable EBPR performance after about 100-day operation. From day 200 days (DPAO SBR) and 250 days (PAO SBR) onward, sludge granulation was observed, and the average granule size of DPAO SBR was approximately 5 times larger than that of PAO SBR. The DPAO granular sludge contained mainly rod-type microbes, whereas the PAO granular sludge contained coccus-type microbes. Fluorescence in situ hybridization analysis revealed that a high ratio of Accumulibacter lade I was found only in DPAO SBR, revealing the important role of this organism in the denitrifying EBPR system. A pyrosequencing analysis showed that Accumulibacter phosphatis was present in PAO sludge at a high proportion of 6%, whereas it rarely observed in DPAO sludge. Dechloromonas was observed in both PAO sludge (3.3%) and DPAO sludge (3.2%), confirming that this organism can use both O-2 and NO3- as electron acceptors. Further, Thauera spp. was identified to have a new possibility as denitrifier capable of phosphorous uptake under anoxic condition. (C) 2018 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
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