Literature DB >> 21601905

Effects of bioaugmentation on indigenous PCB dechlorinating activity in sediment microcosms.

Sonja K Fagervold1, Joy E M Watts, Harold D May, Kevin R Sowers.   

Abstract

Bioaugmentation is an attractive mechanism for reducing recalcitrant pollutants in sediments, especially if this technology could be applied in situ. To examine the potential effectiveness of a bioaugmentation strategy for PCB contamination, PCB dehalorespiring populations were inoculated into Baltimore Harbor sediment microcosms. A culture containing the two most predominant indigenous PCB dehalorespiring microorganisms and a culture containing a strain with a rare ortho dechlorination activity and a non-indigenous strain that attacks double-flanked chlorines, were inoculated into sediment microcosms amended with 2,2',3,5,5',6-hexachlorobiphenyl (PCB 151) and Aroclor 1260. Although we observed a similar reduction in the concentration of PCB 151 in all microcosms at day 300, a reduced lag time for dechlorination activity was observed only in the bioaugmented microcosms and the pattern of dechlorination was altered depending on the initial combination of microorganisms added. Dechlorination of Aroclor 1260 was most extensive when dehalorespiring microorganisms were added to sediment. Overall numbers of dehalorespiring microorganisms in both bioaugmented and non-bioaugmented microcosms increased 100- and 1000-fold with PCB 151 and Aroclor 1260, respectively, and they were sustained for the full 300 days of the experiments. The ability of bioaugmentation to redirect dechlorination reactions in the sediment microcosms indicates that the inoculated PCB dehalorespiring microorganisms effectively competed with the indigenous microbial populations and cooperatively enhanced or altered the specific pathways of PCB dechlorination. These observations indicate that bioaugmentation with PCB dehalorespiring microorganisms is a potentially tractable approach for in situ treatment of PCB impacted sites.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21601905     DOI: 10.1016/j.watres.2011.04.048

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  6 in total

1.  Enhanced reductive dechlorination of polychlorinated biphenyl impacted sediment by bioaugmentation with a dehalorespiring bacterium.

Authors:  Rayford B Payne; Harold D May; Kevin R Sowers
Journal:  Environ Sci Technol       Date:  2011-09-25       Impact factor: 9.028

Review 2.  In situ treatment of PCBs by anaerobic microbial dechlorination in aquatic sediment: are we there yet?

Authors:  Kevin R Sowers; Harold D May
Journal:  Curr Opin Biotechnol       Date:  2012-10-23       Impact factor: 9.740

3.  Remediation of polychlorinated biphenyl impacted sediment by concurrent bioaugmentation with anaerobic halorespiring and aerobic degrading bacteria.

Authors:  Rayford B Payne; Sonja K Fagervold; Harold D May; Kevin R Sowers
Journal:  Environ Sci Technol       Date:  2013-03-26       Impact factor: 9.028

4.  Microbial diversity assessment of polychlorinated biphenyl-contaminated soils and the biostimulation and bioaugmentation processes.

Authors:  Elsa Cervantes-González; Mariela Anelhayet Guevara-García; Jaime García-Mena; Víctor Manuel Ovando-Medina
Journal:  Environ Monit Assess       Date:  2019-01-31       Impact factor: 2.513

5.  Kinetics and threshold level of 2,3,4,5-tetrachlorobiphenyl dechlorination by an organohalide respiring bacterium.

Authors:  Nathalie J Lombard; Upal Ghosh; Birthe V Kjellerup; Kevin R Sowers
Journal:  Environ Sci Technol       Date:  2014-03-26       Impact factor: 9.028

6.  Effects of Ferric Oxyhydroxide on Anaerobic Microbial Dechlorination of Polychlorinated Biphenyls in Hudson and Grasse River Sediment Microcosms: Dechlorination Extent, Preferences, Ortho Removal, and Its Enhancement.

Authors:  Yan Xu; Kelvin B Gregory; Jeanne M VanBriesen
Journal:  Front Microbiol       Date:  2018-07-20       Impact factor: 5.640

  6 in total

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