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首页> 外文期刊>Clean technologies and environmental policy >Application of selected microbial consortia combined with inorganic and oleophilic fertilizers to recuperate oil-polluted soil using land farming technology
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Application of selected microbial consortia combined with inorganic and oleophilic fertilizers to recuperate oil-polluted soil using land farming technology

机译:选定的微生物联合体与无机和亲油肥料结合使用土地耕作技术来修复油污土壤

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Bioremediation is an important technology for the restoration of oil-polluted environments by the use of indigenous or selected microorganisms. We analyzed the efficiency of two selected microbial consortia (A and B) inoculated in combination with inorganic fertilizer (NPK) or oleophilic fertilizer (S200 commercial) on the degradation of polycyclic aromatic hydrocarbons (PAH) by applying them in land fanning treatments. Consortium A was composed of Bacillus pumilus, Alcaligenes faecalis, Micrococcus luteus, and Enterobacter sp.; consortium B was composed of B. pumilus, Enterobacter sp., and Ochrobactrum anthropi. Land treatment was performed in separated plots and the evolution of biodegradation rates was followed for 7 months. Treatment with NPK and inoculation with consortium A efficiently reduced the n-alkane hydrocarbons. In contrast, the application of S200 C and inoculation with consortium B reduced the hydrocarbon removal capacity of polluted soil and they did not show any advantage respected to the non-treated control plot. In addition, the results showed that inoculation with consortium A and application of the combined treatment consortium A + NPK fertilizer gave the highest percentage of PAH removal. These results suggest that the inoculation of polluted soil with consortium A, integrated by hydrocarbon-degrading bacteria and biosurfactant/bioemulsifier-producing bacteria, would be a useful method for improving hydrocarbon biodegradation. In conclusion, inoculation with a selected bacterial consortium at the beginning of a land treatment followed by treatment with NPK fertilizer is an efficient combination treatment of bioaugmentation and biostimula-tion for application in the bioremediation of soil polluted with hydrocarbons.
机译:生物修复是通过使用本地或选定的微生物来恢复油污环境的一项重要技术。我们分析了将两种选择的微生物菌群(A和B)与无机肥料(NPK)或亲油性肥料(S200商业)一起接种后在土地扇形处理中对多环芳烃(PAH)降解的效率。财团A由短小芽孢杆菌,粪便产臭杆菌,黄球微球菌和肠杆菌属组成。财团B由短小芽孢杆菌,肠杆菌属和人形ch(Ochrobactrum anthropi)组成。在分开的土地上进行土地处理,并跟踪生物降解率的演变历时7个月。用NPK处理和接种A财团可有效还原正构烷烃。相反,施用S200 C和用联合体B接种会降低污染土壤的碳氢化合物去除能力,并且相对于未处理的对照样地,它们没有显示任何优势。此外,结果表明,用联合体A接种和联合处理联合体A + NPK肥料的施用可使PAH去除率最高。这些结果表明,用碳氢化合物降解细菌和产生生物表面活性剂/生物乳化剂的细菌整合的财团A接种污染土壤将是改善碳氢化合物生物降解的有用方法。总之,在土地处理开始时接种选定的细菌菌群,然后再使用NPK肥料进行接种是生物强化和生物刺激相结合的有效方法,可用于对碳氢化合物污染的土壤进行生物修复。

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