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Dynamic modeling and simulation of a three-phase fluidized bed batch process for wastewater treatment

机译:三相流化床间歇工艺废水处理的动态建模与仿真

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Batch operation with different starting substrate concentrations (biological oxygen demand (BOD_5)) and biomass concentrations (mixed liquor volatile solid (MLVS)) were performed on a completely mixed three-phase fluidized bed reactor used in treating simulated domestic waste water. The mixed culture microorganisms used were contained in a biofilm attaching to cement balls. The data obtained were fitted to five different kinetic rate equations. The kinetic parameters of each model were obtained using a Gauss-Newton nonlinear regression analysis method. It was found that the Haldane model incorporating endogenous metabolic consumption (Endo-Haldanc model), best described the kinetics of the biological reaction inside the three-phase fluidized bed reactor. This is due to the fact that this model can both account for the effects of cell death and/or endogenous metabolism at low concentration and of substrate inhibition at high concentration.
机译:在用于处理模拟生活污水的完全混合三相流化床反应器上,以不同的起始底物浓度(生物需氧量(BOD_5))和生物质浓度(混合液挥发性固体(MLVS))进行分批操作。所使用的混合培养微生物包含在附着于水泥球的生物膜中。将获得的数据拟合为五个不同的动力学速率方程。使用高斯-牛顿非线性回归分析方法获得每个模型的动力学参数。已经发现,结合了内源性代谢消耗的霍尔丹模型(Endo-Haldanc模型)最能描述三相流化床反应器内部生物反应的动力学。这是由于以下事实:该模型既可以解释低浓度时细胞死亡和/或内源性代谢的影响,又可以解释高浓度时底物抑制的影响。

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