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Heavy Oil Biodegradation by Mixed Bacterial Consortium of Biosurfactant-Producing and Heavy Oil-Degrading Bacteria

机译:混合细菌和重油和重油降解细菌的混合细菌联盟的重油生物降解

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摘要

Environmental contamination from heavy oil is a worldwide problem. In this study, a heavy oil degrading bacterial consortium DL-1314 composed of Bacillus sp. DL-13, Brevibacillus sp. DL-1 and Acinetobacter sp. DL-34 was constructed. The constituents were all biosurfactant-producing bacteria and heavy oil-degrading bacteria. Bench-scale experiments were used to investigate the performance of the bacterial consortium in degrading heavy oil. The bacterial consortium could quickly start up the heavy oil biodegradation and degrade 60.75% of heavy oil in 8 days. Gas chromatography-mass spectrometry (GC-MS) analysis evidenced that the bacterial consortium could degrade 66.32% of saturated hydrocarbons and 63.16% of aromatic hydrocarbons, especially C15-C35 n-alkanes and 2-ring-5-ring PAHs. Analysis of the dynamic changes in the consortium DL-1314 revealed that Bacillus sp. DL-13 played a major role in the formation of surfactants in the early stage of biodegradation, Brevibacillus sp. DL-1 degraded light hydrocarbons in heavy oil, and Bacillus sp. DL-13 and Acinetobacter sp. DL-34 degraded bio-refractory hydrocarbons in heavy oil by synergistic metabolism. In-depth characterization composition of the heavy oil and the microbial consortium revealed chemical and degradation diversity, providing a more comprehensive and accurate understanding of the biodegradation process.
机译:重油的环境污染是全球问题。在这项研究中,由Bacillus Sp组成的重油降解细菌联盟DL-1314。 DL-13,Brevibacillus sp。 DL-1和acinetobacter sp。建造DL-34。组分是生产生物活性剂的细菌和重油降解细菌。使用替补秤实验来研究细菌联盟在降解重油中的性能。细菌联盟可以迅速启动重油生物降解,并在8天内降解60.75%的重油。气相色谱 - 质谱(GC-MS)分析证明了细菌联盟可以降解66.32%的饱和烃和63.16%的芳烃,特别是C15-C35 N-烷烃和2环-5环PAH。分析联盟DL-1314中的动态变化显示芽孢杆菌SP。 DL-13在Brevibacillus SP的早期形成表面活性剂的形成中发挥了重要作用。 DL-1在重油中降解光烃,均为芽孢杆菌。 DL-13和acinetobacter sp。通过协同代谢,DL-34通过协同代谢降低重油中的生物耐火材料。重质油和微生物联盟的深入表征组成揭示了化学和降解多样性,为生物降解过程提供更全面和准确的理解。

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