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Biodegradation of polycyclic aromatic hydrocarbons (PAHs) by novel bacterial consortia tolerant to diverse physical settings - Assessments in liquid- and slurry-phase systems

机译:可耐受多种物理环境的新型细菌聚生体对多环芳烃(PAHs)的生物降解-在液相和浆相系统中进行评估

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Field-scale bioremediation of PAHs contaminated soils have proved to be difficult and challenging due to inhibited growth of PAH degrading microbes. In this study, for the first time mixed bacterial cultures designated as consortia-A and N were developed using elite metal or acid tolerant, N-fixing, P-solubilizing and biosurfactant producing PAH degraders enriched from manufactured gas plant sites. The two consortia could degrade both LMW and HMW PAHs. Kinetic studies of PAH degradation by the consortia showed the highest biodegradation rate constants (k = 0.027-0.61 day(-1)) and lowest half-life time (t(1/2) = 1-26 days) values reported to date in liquid cultures and highlighted the use of consortium-A for the remediation of acidic soils due to its tolerance up to pH 5. Furthermore, bioaugmentation of these consortia has proven to be effective in degradation of LMW (>95%) and HMW (90%) PAHs from spiked soil slurries. Amendment of consortia-A and N exhibited 10.7 and 443% more total PAHs degradation, respectively than natural attenuation in 60 days even from the real long-term mixed contaminated soils. Thus the results of this study demonstrate the great potential of these novel bacterial consortia, particularly consortium-N for use in field-scale bioremediation of PAHs in long-term mixed contaminated neutral soils. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于抑制了PAH降解微生物的生长,已证明对受PAHs污染的土壤进行现场规模的生物修复是困难而艰巨的。在这项研究中,首次使用富集了人工煤气厂场所的金属或耐酸,固氮,P增溶和生物表面活性剂生产PAH降解物,开发了混合菌培养物,称为菌群A和N。这两个财团可能同时降解LMW和HMW PAH。财团对PAH降解的动力学研究表明,迄今为止报道的最高生物降解速率常数(k = 0.027-0.61 day(-1))和最低半衰期(t(1/2)= 1-26天)值。液体培养,并强调了由于使用A财团A可以修复酸性土壤,因为它对pH的耐受性高达5。此外,已证明对这些财团的生物强化可有效降解LMW(> 95%)和HMW(90%) )加标土壤浆料中的PAH。即使在真正的长期混合污染土壤中,联合体A和N的修正显示60天总PAHs降解也分别比自然衰减多10.7和443%。因此,这项研究的结果证明了这些新型细菌菌群的巨大潜力,特别是N菌群,可用于在长期混合污染的中性土壤中对PAHs进行现场规模的生物修复。 (C)2015 Elsevier Ltd.保留所有权利。

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