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同时降解半焦废水的酚类和石油烃:细菌生物群落的构建及其代谢分工。

Simultaneous biodegradation of phenolics and petroleum hydrocarbons from semi-coking wastewater: Construction of bacterial consortium and their metabolic division of labor.

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Key Lab of Northwest Water Resource, Environment and Ecology, MOE, Xi'an University of Architecture and Technology, Xi'an 710055, China.

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Research Institute of Membrane Separation of Shaanxi Province, Xi'an 710055, China.

出版信息

Bioresour Technol. 2022 Mar;347:126377. doi: 10.1016/j.biortech.2021.126377. Epub 2021 Nov 18.

Abstract

Phenols and petroleum hydrocarbons were the main contributors to COD in semi-coking wastewater, and their removal was urgent and worthwhile. The microbial strains were selected to construct microbial community for the wastewater treatment. The concentration of phenols was decreased from 2450 ± 1.2 mg/L to 200 ± 0.9 mg/L, and the removal rate of petroleum hydrocarbons was up to 97.08 ± 0.09 % by microorganisms. After phenolic compounds with high toxicity were removed by bioaugmentation, the treated semi-coking wastewater was more biodegradable, and its water quality has been significantly improved. Through GC-MS and high-through sequencing technology, the metabolic division of labor in degradation of phenols, ring-cleavage of aromatic compounds, mineralization of metabolites was further revealed. The microbial community consisting of Pseudomonas stutzeri N2 and Rhodococcus qingshengii FF could effectively and simultaneously remove phenols and petroleum hydrocarbons, and these two strains possess great potential of being applied in aerobic biological treatment process of large-scale semi-coking wastewater.

摘要

酚类和石油烃是半焦废水 COD 的主要贡献物,去除它们迫在眉睫,也是值得的。选择微生物菌株构建微生物群落来处理废水。酚类浓度从 2450±1.2mg/L 降低到 200±0.9mg/L,石油烃的去除率高达 97.08±0.09%。通过生物增强去除高毒性酚类化合物后,处理后的半焦废水可生化性更好,水质明显改善。通过 GC-MS 和高通量测序技术,进一步揭示了酚类化合物降解、芳香族化合物环裂解、代谢物矿化过程中的代谢分工。由恶臭假单胞菌 N2 和青霉菌 FF 组成的微生物群落可以有效且同时去除酚类和石油烃,这两株菌在大规模半焦废水好氧生物处理过程中有很大的应用潜力。

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