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Bioaugmentation of PAH-contaminated soils: A novel procedure for introduction of bacterial degraders into contaminated soil

机译:PAH污染土壤的生物沉积:一种将细菌降解剂引入污染土壤的新方法

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An innovative method of inoculation of contaminated soils tested under laboratory conditions resulted in increased efficiency of PAH biodegradation in an aged industrial soil by almost 40% compared to biostimulation alone. The process encompassed inoculation of a small amount of contaminated soil with exogenous degraders. This first step was followed by a necessary propagation period of the introduced microbes. The material was further used as the inoculant for next step of the bioaugmentation procedure for a larger amount of contaminated soil in various ratios from 1:200 to 1:1000 and the process was repeated once more. The results showed that even the most diluted soil sample was very successful in terms of biodegradation of PAHs, resulting in 72.9% removal of PAHs including substantial biodegradation of heavy 4-5 ring PAHs. The employed next generation sequencing method provided evidence that one of the bioaugmentation strains, Acinetobacter calcoaceticus, was the dominant bacterial species in the soil and the results documented its involvement in the successful bioremediation experiment. The novel bioaugmentation method seems to be a promising strategy avoiding complications connected with the large-scale production of inoculant in bioreactors.
机译:在实验室条件下测试的受污染土壤接种的一种创新方法导致了与单独的生物致刺激相比,在老年工业土壤中达到近40%的PAH生物降解的效率。该过程包括与外源性降解的少量污染土壤接种。该第一步之后是引入的微生物的必要传播周期。该材料进一步用作抗截损过程的下一步骤,用于在各种比例从1:200至1:1000的各种比例进行较少量的污染物,并且再次重复该方法。结果表明,即使是最稀释的土壤样品也在PAHS的生物降解方面非常成功,导致72.9%的PAHS除去,包括重型4-5环PAH的实质性生物降解。所用的下一代测序方法提供了证据表明,一种生物沉积菌株,分枝杆菌菌根,是土壤中显性细菌种类,结果记录了其参与成功的生物修复实验。新颖的生物沉积方法似乎是一个有希望的策略,避免了与生物反应器中的大规模生产相连的并发症。

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