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首页> 外文期刊>International Journal of Environmental Science and Technology >Kinetics of biodegradation of diesel fuel by enriched microbial consortia from polluted soils.
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Kinetics of biodegradation of diesel fuel by enriched microbial consortia from polluted soils.

机译:从污染土壤中富集的微生物群落对柴油的生物降解动力学。

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Three microbial consortia were isolated from three polluted soils located at an oil refinery and acclimated to grow on diesel fuel as the sole carbon source. Batch experiments were then conducted with the three consortia to study the kinetics of diesel biodegradation. The effects of temperature (25, 30 and 35 degrees C) and diesel concentration (0.5, 1 and 3%) on the biodegradation of diesel were analysed. Several species were identified in the acclimated microbial consortia, and some of them appeared in more than one consortium. Thermal inhibition was observed at 35 degrees C. In the rest of experiments, over 80% of the substrate was degraded after 40 h of treatment. These results proved the good feasibility of using the polluted sites as sources of mixed consortia for hydrocarbon degradation. However, diesel degradation efficiencies and rates were very similar, suggesting that the acclimation process produced mixed consortia with very similar characteristics; in this context, origin of the soil sample was not a decisive factor. A simple Monod-type kinetic model was used to simulate the biodegradation process, and accurate results were obtained. The micro max values were between 0.17 and 0.34 h-1. The results of this study revealed that the consortia can function at high concentrations of hydrocarbons without any sign of growth inhibition, which is important for the design of bioreactors for wastewater treatment with high concentrations of fuel.
机译:从位于一家炼油厂的三个污染土壤中分离出三个微生物群落,并使其能够以柴油作为唯一碳源生长。然后与三个财团进行了批处理实验,以研究柴油生物降解的动力学。分析了温度(25、30和35摄氏度)和柴油浓度(0.5、1和3%)对柴油生物降解的影响。在适应的微生物群落中鉴定出几种,其中一些出现在一个以上的群落中。在35摄氏度下观察到热抑制。在其余实验中,处理40小时后,超过80%的底物被降解。这些结果证明了使用污染位点作为混合财团进行烃降解的良好可行性。但是,柴油的降解效率和降解速率非常相似,这表明适应过程产生了具有非常相似特性的混合财团。在这种情况下,土壤样品的来源不是决定性因素。一个简单的Monod型动力学模型被用来模拟生物降解过程,并获得了准确的结果。微观 max 值在0.17和0.34 h -1 之间。这项研究的结果表明,该财团可以在高浓度的碳氢化合物下运行而没有任何生长抑制的迹象,这对于设计用于高浓度燃料废水处理的生物反应器非常重要。

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