Literature DB >> 22120124

Biofilm formation and microbial community analysis of the simulated river bioreactor for contaminated source water remediation.

Xiang-Yang Xu1, Li-Juan Feng, Liang Zhu, Jing Xu, Wei Ding, Han-Ying Qi.   

Abstract

BACKGROUND, AIM, AND SCOPE: The start-up pattern of biofilm remediation system affects the biofilm characteristics and operating performances. The objective of this study was to evaluate the performances of the contaminated source water remediation systems with different start-up patterns in view of the pollutants removal performances and microbial community succession.
METHODS: The operating performances of four lab-scale simulated river biofilm reactors were examined which employed different start-up methods (natural enrichment and artificial enhancement via discharging sediment with influent velocity gradient increase) and different bio-fillers (Elastic filler and AquaMats® ecobase). At the same time, the microbial communities of the bioreactors in different phases were analyzed by polymerase chain reaction, denaturing gradient gel electrophoresis, and sequencing. RESULTS AND DISCUSSION: The pollutants removal performances became stable in the four reactors after 2 months' operation, with ammonia nitrogen and permanganate index (COD(Mn)) removal efficiencies of 84.41-94.21% and 69.66-76.60%, respectively. The biomass of mature biofilm was higher in the bioreactors by artificial enhancement than that by natural enrichment. Microbial community analysis indicated that elastic filler could enrich mature biofilm faster than AquaMats®. The heterotrophic bacteria diversity of biofilm decreased by artificial enhancement, which favored the ammonia-oxidizing bacteria (AOB) developing on the bio-fillers. Furthermore, Nitrosomonas- and Nitrosospira-like AOB coexisted in the biofilm, and Pseudomonas sp., Sphaerotilus sp., Janthinobacterium sp., Corynebacterium aurimucosum were dominant in the oligotrophic niche.
CONCLUSION: Artificial enhancement via the combination of sediment discharging and influent velocity gradient increasing could enhance the biofilm formation and autotrophic AOB enrichment in oligotrophic niche.

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Year:  2011        PMID: 22120124     DOI: 10.1007/s11356-011-0649-3

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  24 in total

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Authors:  Thomas E Freitag; James I Prosser
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2.  Monitoring of microbial souring in chemically treated, produced-water biofilm systems using molecular techniques.

Authors:  B V Kjellerup; R H Veeh; P Sumithraratne; T R Thomsen; K Buckingham-Meyer; B Frølund; P Sturman
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4.  Seasonal variation in communities of ammonia-oxidizing bacteria based on polymerase chain reaction - denaturing gradient gel electrophoresis in a biofilm reactor for drinking water pretreatment.

Authors:  Xiao-Wen Zhang; Ying-Ying Qin; Hong-Qiang Ren; Dao-Tang Li; Hong Yang
Journal:  Can J Microbiol       Date:  2008-05       Impact factor: 2.419

5.  Systematic study of the effect of operating variables on reactor performance and microbial diversity in laboratory-scale activated sludge reactors.

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6.  Bacterial diversity promotes community stability and functional resilience after perturbation.

Authors:  M S Girvan; C D Campbell; K Killham; J I Prosser; L A Glover
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Authors:  Ying-Ying Qin; Dao-Tang Li; Hong Yang
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8.  Changes in the community structure and activity of betaproteobacterial ammonia-oxidizing sediment bacteria along a freshwater-marine gradient.

Authors:  Thomas E Freitag; Lisa Chang; James I Prosser
Journal:  Environ Microbiol       Date:  2006-04       Impact factor: 5.491

9.  Thermal gradient gel electrophoresis analysis of bioprotection from pollutant shocks in the activated sludge microbial community.

Authors:  C A Eichner; R W Erb; K N Timmis; I Wagner-Döbler
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Authors:  G A Kowalchuk; J R Stephen; W De Boer; J I Prosser; T M Embley; J W Woldendorp
Journal:  Appl Environ Microbiol       Date:  1997-04       Impact factor: 4.792

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3.  Effect of the chemical composition of filter media on the microbial community in wastewater biofilms at different temperatures.

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4.  Assessment of the aerobic glass beads fixed biofilm reactor (GBs-FBR) for the treatment of simulated methylene blue wastewater.

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