首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Bioremediation of a polyaromatic hydrocarbon contaminated soil by native soil microbiota and bioaugmentation with isolated microbial consortia
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Bioremediation of a polyaromatic hydrocarbon contaminated soil by native soil microbiota and bioaugmentation with isolated microbial consortia

机译:天然土壤微生物群落对多环芳烃污染土壤的生物修复和分离菌群的生物强化

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Biodegradation of a mixture of PAHs was assessed in forest soil microcosms performed either without or with bioaugmentation using individual fungi and bacterial and a fungal consortia. Respiratory activity. metabolic intermediates and extent of PAH degradation were determined. In all microcosms the low molecular weight PAH's naphthalene, phenanthrene and anthracene, showed a rapid initial rate of removal. However, bioaugmentation did not significantly affect the biodegradation efficiency for these compounds. Significantly slower degradation rates were demonstrated for the high molecular weight PAH's pyrene, benz[a]anthracene and benz[a]pyrene. Bioaugmentation did not improve the rate or extent of PAH degradation, except in the case of Aspergillus sp. Respiratory activity was determined by CO2 evolution and correlated roughly with the rate and timing of PAH removal. This indicated that the PAHs were being used as an energy Source. The native microbiota responded rapidly to the addition of the PAHs and demonstrated the ability to degrade all of the PAHs added to the soil, indicating their ability to remediate PAH-contaminated soils.
机译:在森林土壤的微观世界中评估了多环芳烃混合物的生物降解情况,无论是使用单独的真菌,细菌还是真菌和菌群,都可以进行或不进行生物增强。呼吸活动。确定了代谢中间体和PAH降解的程度。在所有微观世界中,低分子量PAH的萘,菲和蒽均显示出快速的初始去除速率。但是,生物增强并没有显着影响这些化合物的生物降解效率。高分子量PAH的pyr,苯并[a]蒽和苯并[a] py的降解速度明显降低。除了在曲霉菌中,生物强化并不能提高PAH降解的速度或程度。呼吸活动由CO2的释放决定,并与去除PAH的速度和时间大致相关。这表明多环芳烃被用作能源。天然微生物对添加多环芳烃反应迅速,并显示出降解所有添加到土壤中的多环芳烃的能力,表明它们具有修复受多环芳烃污染的土壤的能力。

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