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MODELING BACTERIAL COMPETITION IN ACTIVATED SLUDGE USING NON-LINEAR DYNAMICS AND MONOD KINETICS

机译:利用非线性动力学和单动力学对活性污泥中细菌竞争进行建模

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A mechanistic model for activated sludge sewage treatment was developed to predict exploitative competition of six aerobic heterotrophic bacterial species competing for three complementary growth limiting substrates using the noninteractive Monod equation. The central hypothesis of the model is that in a multi-species/substrate system the number of coexisting bacterial species, N, exceeds the number of limiting resources, K, available for them. The model was used to investigate the effect of bioreactor conditions on the diversity of bacterial species. Preliminary results of model simulations showed that for a certain range of solids retention times (2.28-5.66 days) the competition of six bacterial species for three growth limiting substrates produces oscillations within the structure of the bacterial community allowing for the sustained growth of more than three species on the three substrates.
机译:建立了用于活性污泥污水处理的机械模型,以使用非交互性Monod方程预测竞争三种互补生长限制底物的6种好氧异养细菌物种的利用竞争。该模型的主要假设是,在多物种/底物系统中,共存细菌物种N的数量超过了可供其使用的限制资源K的数量。该模型用于研究生物反应器条件对细菌物种多样性的影响。模型模拟的初步结果表明,在一定范围的固体保留时间(2.28-5.66天)中,六个细菌物种竞争三种生长限制底物会在细菌群落结构内产生振荡,从而使三个以上的细菌持续生长三种底物上的物种。

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