| Literature DB >> 29413921 |
Linlin Chen1, Junjie Shao2, Hui Chen1, Caiqin Wang1, Xinyi Gao1, Xiangyang Xu3, Liang Zhu4.
Abstract
For enhanced dechlorination of 2,4-dichloronitrobenzene (2,4-DClNB), a coupled microbial electrosynthesis-upflow anaerobic sludge reactor (MES-UASB) was established, and the effect of cathode potential on the performance of combined process was investigated in this study. Results showed that a higher dechlorination efficiency of 78.5 ± 6.1% was achieved in the coupled MES-UASB at -660 mV, and the degradation rate of 4-chloroaniline (4-ClAn) reached 4.61 mg·L-1·d-1 within 120 h at -660 mV of cathode potential in batch experiments. The results of Illumina sequencing indicated that the biocathode operated at a lower potential favored the enrichment of dechlorination-related microbes such as Dehalobacter, Dehalococcoides and Anaeromyxobacter both in granular sludge and cathode biofilm. It could be speculated that a lower cathode potential is more feasible for the dechlorination of 2,4-DClNB due to the enrichment of dechlorination-related microbes as well as the production of electrons with higher energy for long-distance electron transfer (LDET).Entities:
Keywords: 2,4-Dichloronitrobenzene; Biocathode; Cathode potential; Reductive dechlorination; UASB
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Year: 2018 PMID: 29413921 DOI: 10.1016/j.biortech.2018.01.092
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642