Literature DB >> 33964769

Enhancement of perchloroethene dechlorination by a mixed dechlorinating culture via magnetic nanoparticle-mediated isolation method.

Kezhen Chen1, Zefan Liu1, Xiaomin Wang2, Chungui Yu1, Junxiang Ye1, Chunna Yu3, Feier Wang1, Chaofeng Shen4.   

Abstract

Highly enriched active dechlorinating cultures are important in advancing microbial remediation technology. This study attempted to enrich a rapid perchloroethene (PCE) dechlorinating culture via magnetic nanoparticle-mediated isolation (MMI). MMI is a novel method that can separate the fast-growing and slow-growing population in a microbial community without labelling. In the MMI process, PCE dechlorination was enhanced but the subsequent trichloroethene (TCE) dechlorination was inhibited, with TCE cumulative rate reached up to 80.6% within 70 days. Meanwhile, the microbial community was also changed, with fast-growing genera like Dehalobacterium and Petrimonas enriched, and slow-growing Methanosarcina almost ruled out. Relative abundances of several major genera including Petrimonas and Methanosarcina were positively related to TCE dechlorination rate and the relative abundance of Dehalococcoides. On the other hand, Dehalobacterium was negatively related to TCE dechlorination rate and Dehalococcoides abundance, suggesting potential competition between Dehalobacterium and Dehalococcoides. The regrowth of Methanosarcina coupled well with the recovery of TCE dechlorination capacity, which implied the important role of methanogens in TCE dechlorination. Via MMI method, a simpler but more active microbial consortium could be established to enhance PCE remediation efficiency. Methanogens may act as the indicators or biomarkers for TCE dechlorination, suggesting that methanogenic activity should also be monitored when enriching dechlorination cultures and remediating PCE contaminated sites. CAPSULE: A rapid perchloroethene dechlorinator was gotten via magnetic nanoparticles and dechlorination of trichloroethene coupled well with growth of Methanosarcina.
Copyright © 2021 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Dehalobacterium; Dehalococcoides; Magnetic nanoparticle-mediated isolation; Methanosarcina; Rapid dechlorination

Year:  2021        PMID: 33964769     DOI: 10.1016/j.scitotenv.2021.147421

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Optimization of Dechlorination Experiment Design Using Lightweight Deep Learning Model.

Authors:  Jianghua Peng; Houzhang Tan
Journal:  Comput Intell Neurosci       Date:  2022-06-25
  1 in total

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