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  4. Microbial degradation of 4-monobrominated diphenyl ether with anaerobic sludge
 
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Microbial degradation of 4-monobrominated diphenyl ether with anaerobic sludge

Journal
Journal of Hazardous Materials
Journal Volume
213
Journal Volume
213-214
Pages
341-346
Start Page
341
End Page
346
ISSN
18733336
Date Issued
2012-04-30
Author(s)
YANG-HSIN SHIH  
Chou, Hsi-Ling
Peng, Yu-Huei
DOI
10.1016/j.jhazmat.2012.02.009
URI
https://www.scopus.com/pages/publications/84858335291?origin=resultslist
http://scholars.lib.ntu.edu.tw/handle/123456789/370859
Abstract
Polybrominated diphenyl ethers (PBDEs) are widely used flame retardant additives for many plastic and electronic products. Owing to their ubiquitous distribution in the environment, multiple toxicity to humans, and increasing accumulation in the environment, the fate of PBDEs is of serious concern for public safety. In this study, the degradation of 4-monobrominated diphenyl ether (BDE-3) in anaerobic sludge and the effect of carbon source addition were investigated. BDE-3 can be degraded by two different anaerobic sludge samples. The by-products, diphenyl ether (DE) and bromide ions, were monitored, indicating the reaction of debromination within these anaerobic samples. Co-metabolism with glucose facilitated BDE-3 biodegradation in terms of kinetics and efficiency in the Jhongsing sludge. Through the pattern of amplified 16S rRNA gene fragments in denatured gradient gel electrophoresis (DGGE), the composition of the microbial community was analyzed. Most of the predominant microbes were novel species. The fragments enriched in BDE-3-degrading anaerobic sludge samples are presumably Clostridium sp. This enrichment coincides with the H 2 gas generation and the facilitation of debromination during the degradation process. Findings of this study provide better understanding of the biodegradation of brominated DEs and can facilitate the prediction of the fate of PBDEs in the environment.
Subjects
4-Monobrominated diphenyl ether
Anaerobic sludge
Debromination
Denaturing gradient gel electrophoresis
Glucose
Type
journal article

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