Response of TCE Biodegradation to Elevated H2 and O2: Implication for Electrokinetic-Enhanced Bioremediation DOI

Weiwei Ouyang,

Yao Huang, Li Cui

et al.

Published: Jan. 1, 2023

Electrokinetic-enhanced bioremediation (EK-Bio) has been developed as a promising technology for the remediation of subsurface trichloroethylene (TCE) contamination. The effects produced pure and abundant H2 O2 by anode cathode EK-Bio on microbial community changes TCE biodegradation remain unknown. This study investigated influence high dissolved (DH, 0.2-0.7 mg/L) (DO, 2.6-6.6 concentrations transformation indigenous communities in TCE-contaminated sediment, including TCE-removing populations, using 16S rRNA sequencing, functional gene analyses. results showed that introduction enhanced degradation, causing 90.4% removal four weeks, cis-dichloroethylene (cis-DCE) was accordingly. following three ways should be responsible this promoted degradation. Firstly, DH rapidly reduced oxidation-reduction potential (ORP) value to around -500 mV, beneficial dechlorination. Secondly, significantly changed enrichment anaerobic dechlorinators, such Sulfuricurvum, Sulfurospirillum, Geobacter, Desulfitobacterium, increased abundance dechlorination pceA. Thirdly, environment alleviated electronic competition between dechlorinators sulfate-reducing bacteria. However, bio-remediation did not occur DO even after ten weeks due decreases aerobic co-metabolic microbes Pseudomonas Comamonas shortage growth substrate mmoX carrier Methyloversatilis. competitive organic carbon (DOC) consumption unfriendly microbe-microbe interactions also interpreted non-degradation environment. These provided evidence mechanism EK-Bio. Providing obligate metabolic bacteria electrochemical cathodes anodes, respectively, or substrates can feasible methods promote shallow aquifer under technology.

Language: Английский

Strategies and mechanisms for improving groundwater remediation efficiency of chlorinated ethenes by controlling the particle size of polyhydroxyalkanoate DOI
Jie Ma,

Linhui Lei,

Zhiwei Gong

et al.

Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 496, P. 154038 - 154038

Published: July 15, 2024

Language: Английский

Citations

0

Understanding the sources, function, and irreplaceable role of cobamides in organohalide-respiring bacteria DOI Creative Commons
Yongfeng Lu,

Fancheng Lu,

Jiliang Zhang

et al.

Frontiers in Microbiology, Journal Year: 2024, Volume and Issue: 15

Published: July 30, 2024

Halogenated organic compounds are persistent pollutants that pose a serious threat to human health and the safety of ecosystems. Cobamides essential cofactors for reductive dehalogenases (RDase) in organohalide-respiring bacteria (OHRB), which catalyze dehalogenation process. This review systematically summarizes impact cobamides on organohalide respiration. The catalytic processes cobamide also discussed. Additionally, we examine OHRB, cannot synthesize must obtain it from environment through salvage pathway; co-culture with producer is more beneficial possible. aims help readers better understand importance function dehalogenation. presented information can aid development bioremediation strategies.

Language: Английский

Citations

0

Construction of a synthetic anaerobic dechlorination microbiome to degrade chlorinated ethenes by application of metabolic interactions principle DOI

Zeyi Wang,

Yu Yang,

Rongjian Zhao

et al.

The Science of The Total Environment, Journal Year: 2024, Volume and Issue: 955, P. 176981 - 176981

Published: Oct. 18, 2024

Language: Английский

Citations

0

Study on the Fine Characterization of Spatial Distribution and Predictive Modeling of Remediation of Site Pollution DOI Open Access
Jun Yang,

Caijie Wei

Water, Journal Year: 2024, Volume and Issue: 16(21), P. 3154 - 3154

Published: Nov. 4, 2024

The present study focuses on a site contaminated with halogenated hydrocarbons, utilizing detailed inventory of contamination data to achieve the precise characterization groundwater pollution. Employing MOFLOW-2000 software, flow model was established for area. In conjunction MT3DMS, predictive constructed simulate and forecast spatiotemporal distribution contaminant migration attenuation following remediation. simulation area delineated based geographical features, vertical range strata also determined. To establish hydrogeological conceptual target remediation site, comprehensive were collected, encompassing geological structures, hydrological parameters, rainfall information. Model calibration six layers low-permeability aquifer intervals revealed by exploration wells MW1–5, as well groundwater-level contours data. Based from September 2010, an initial three-dimensional tetrachloroethylene (PCE) generated. Subsequently, solute transport PCE established, incorporating various enhanced reductive dechlorination (ERD) strategies applied at different times locations. Calibration against actual monitoring presence unmonitored dense non-aqueous phase liquids (DNAPLs) contributing continuous release elevation concentrations. By accounting DNAPL release, calibrated closely matched observed concentration decay patterns, effectively capturing dynamics within system. modeling approach proposed in this provides important support current it is applicable simulating predicting pollution scenarios similar sites.

Language: Английский

Citations

0

Response of TCE Biodegradation to Elevated H2 and O2: Implication for Electrokinetic-Enhanced Bioremediation DOI

Weiwei Ouyang,

Yao Huang, Li Cui

et al.

Published: Jan. 1, 2023

Electrokinetic-enhanced bioremediation (EK-Bio) has been developed as a promising technology for the remediation of subsurface trichloroethylene (TCE) contamination. The effects produced pure and abundant H2 O2 by anode cathode EK-Bio on microbial community changes TCE biodegradation remain unknown. This study investigated influence high dissolved (DH, 0.2-0.7 mg/L) (DO, 2.6-6.6 concentrations transformation indigenous communities in TCE-contaminated sediment, including TCE-removing populations, using 16S rRNA sequencing, functional gene analyses. results showed that introduction enhanced degradation, causing 90.4% removal four weeks, cis-dichloroethylene (cis-DCE) was accordingly. following three ways should be responsible this promoted degradation. Firstly, DH rapidly reduced oxidation-reduction potential (ORP) value to around -500 mV, beneficial dechlorination. Secondly, significantly changed enrichment anaerobic dechlorinators, such Sulfuricurvum, Sulfurospirillum, Geobacter, Desulfitobacterium, increased abundance dechlorination pceA. Thirdly, environment alleviated electronic competition between dechlorinators sulfate-reducing bacteria. However, bio-remediation did not occur DO even after ten weeks due decreases aerobic co-metabolic microbes Pseudomonas Comamonas shortage growth substrate mmoX carrier Methyloversatilis. competitive organic carbon (DOC) consumption unfriendly microbe-microbe interactions also interpreted non-degradation environment. These provided evidence mechanism EK-Bio. Providing obligate metabolic bacteria electrochemical cathodes anodes, respectively, or substrates can feasible methods promote shallow aquifer under technology.

Language: Английский

Citations

0