Construction of biochar-based organohalide-respiring bacterial agent for remediation of 2,4,6-trichlorophenol contaminated soil

Construction of an efficient bio-reductive dechlorination system remains challenging due to the narrow ecological niche and low-growth rate of organohalide-respiring bacteria during field remediation. In this study, a biochar-based organohalide-respiring bacterial agent was obtained, and its perform...

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Veröffentlicht in:Journal of hazardous materials 2024-07, Vol.472, p.134438-134438, Article 134438
Hauptverfasser: Chen, Xueqi, Hu, Jiatian, Cao, Di, Yang, Wenxin, Zhang, Zimeng, Zu, Yunxia, Chen, Fan, Zhiling, Li, Aijie, Wang
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Sprache:eng
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Zusammenfassung:Construction of an efficient bio-reductive dechlorination system remains challenging due to the narrow ecological niche and low-growth rate of organohalide-respiring bacteria during field remediation. In this study, a biochar-based organohalide-respiring bacterial agent was obtained, and its performance and effects on indigenous microbial composition, diversity, and inter-relationship in soil were investigated. A well-performing material, Triton X-100 modified biochar (BC600-TX100), was found to have the superior average pore size, specific surface area and hydrophicity, compared to other materials. Interestingly, Pseudomonas aeruginosa CP-1, which is capable of 2,4,6-TCP dechlorination, showed a 348 times higher colonization cell number on BC600-TX100 than that of BC600 after 7 d. Meanwhile, the dechlorination rate in soil showed the highest (0.732 d−1) in the BC600-TX100 bacterial agent than in the other agents. The long-term performance of the BC600-TX100 OHRB agent was also verified, with a stable dechlorination activity over six cycles. Soil microbial community analysis found the addition of the BC600-TX100 OHRB agent significantly increased the relative abundance of genus Pseudomonas from 1.53 % to 11.2 %, and Pseudomonas formed a close interaction relationship with indigenous microorganisms, creating a micro-ecological environment conducive to reductive dechlorination. This study provides a feasible bacterial agent for the in-situ bioremediation of soil contaminated organohalides. Halogenated organic compounds are a type of toxic, refractory, and bio-accumulative persistent compounds widely existed in environment, widely detected in the air, water, and soil. In this study, we provide a feasible bacterial agent for the in-situ bioremediation of soil contaminated halogenated organic compounds. The application of biochar provides new insights for “Turning waste into treasure”, which meets with the concept of green chemistry. [Display omitted] •TX100 modified biochar was found to be a well-performing biomaterial on OHRB colonization.•Dechlorination activity was greatly accelerated by the BC600-TX100 bacterial agent in soil.•The added BC600-TX100 bacterial agent driven a significant increase in the abundance of OHRB.•The long-term experiment revealed synergistic mechanism between OHRB and indigenous microbes.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2024.134438