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Biodegradation kinetics of aromatic hydrocarbon mixtures by pure and mixed bacterial cultures.

机译:纯和混合细菌培养物对芳香烃混合物的生物降解动力学。

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摘要

Microbial growth on pollutant mixtures is an important aspect of bioremediation and wastewater treatment. However, efforts to develop mathematical models for mixed substrate kinetics have been limited. Nearly all models group either the microbial population (as "biomass") or the chemical species (e.g., as biological oxygen demand). When individual chemical species are considered, most models assume either no interaction or that the nature of the interaction is competition for the same rate-limiting enzyme. And when individual microbial species are considered, simple competition for the growth substrate is the only interaction included. Here, we present results using Pseudomonas putida F1 and Burkholderia sp. strain JS150 growing individually and together on benzene, toluene, phenol, and their mixtures and compare mathematical models to describe these results. We demonstrate that the simple models do not accurately predict the outcome of these biodegradation experiments, and we describe the development of a new model for substrate mixtures, the sum kinetics with interaction parameters (SKIP) model. In mixed-culture experiments, the interactions between species were substrate dependent and could not be predicted by simple competition models. Together, this set of experimental and modeling results presents our current state of work in this area and identifies challenges for future modeling efforts.
机译:污染物混合物上的微生物生长是生物修复和废水处理的重要方面。然而,开发用于混合底物动力学的数学模型的努力受到限制。几乎所有模型都将微生物种群(作为“生物量”)或化学物种(例如,作为生物需氧量)分组。当考虑单个化学物种时,大多数模型都假定没有相互作用或相互作用的性质是竞争相同的限速酶。并且,当考虑单个微生物物种时,对生长底物的简单竞争是唯一的相互作用。在这里,我们介绍了使用恶臭假单胞菌F1和Burkholderia sp。的结果。菌株JS150在苯,甲苯,苯酚及其混合物上单独生长并一起生长,并比较数学模型来描述这些结果。我们证明了简单的模型不能准确预测这些生物降解实验的结果,并且我们描述了底物混合物的新模型,具有相互作用参数的总动力学模型(SKIP)的发展。在混合培养实验中,物种之间的相互作用取决于底物,无法通过简单的竞争模型进行预测。这组实验和建模结果共同显示了我们在该领域的当前工作状况,并确定了未来建模工作所面临的挑战。

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