Jiang T, Liu X, Kennedy M D, Schippers J C, Vanrolleghem P A
BIOMATH, Ghent University, Coupure Links 653, B-9000 Gent, Belgium.
Water Sci Technol. 2005;52(10-11):359-67.
Membrane bioreactors (MBRs) are attracting global interest but the mathematical modeling of the biological performance of MBRs remains very limited. This study focuses on the modeling of a side-stream MBR system using the Activated Sludge Model No. 1 (ASM1), and compares the results with the modeling of traditional activated sludge processes. ASM1 parameters relevant for the long-term biological behaviour in MBR systems were calibrated (i.e. Y(H) = 0.72 gCOD/gCOD, Y(A) = 0.25 gCOD/gN, b(H) = 0.25 d(-1), b(A) = 0.080 d(-1) and f(p) = 0.06), and generally agreed with the parameters in traditional activated sludge processes, with the exception that a higher autotrophic biomass decay rate was observed in the MBR. Influent wastewater characterization was proven to be a critical step in model calibration, and special care should be taken in characterizing the inert particulate COD (X(I)) concentration in the MBR influent. It appeared that the chemical-biological method was superior to the physical-chemical method. A sensitivity analysis for steady-state operation and DO dynamics suggested that the biological performance of the MBR system (the sludge concentration, effluent quality and the DO dynamics) are very sensitive to the parameters (i.e. Y(H), Y(A), b(H), b(A) micro(maxH) and micro(maxA), and influent wastewater components (X(I), S(s), X(s) and S(NH)).
膜生物反应器(MBR)正引起全球关注,但对其生物学性能的数学建模仍非常有限。本研究聚焦于使用1号活性污泥模型(ASM1)对侧流MBR系统进行建模,并将结果与传统活性污泥工艺的建模结果进行比较。对与MBR系统长期生物学行为相关的ASM1参数进行了校准(即Y(H)=0.72 gCOD/gCOD,Y(A)=0.25 gCOD/gN,b(H)=0.25 d(-1),b(A)=0.080 d(-1)和f(p)=0.06),总体上与传统活性污泥工艺中的参数一致,但在MBR中观察到自养生物量衰减速率更高。已证明进水废水特性是模型校准中的关键步骤,在表征MBR进水的惰性颗粒COD(X(I))浓度时应格外小心。结果表明,化学-生物学方法优于物理-化学方法。对稳态运行和溶解氧动态的敏感性分析表明,MBR系统的生物学性能(污泥浓度、出水水质和溶解氧动态)对参数(即Y(H)、Y(A)、b(H)、b(A)、μ(maxH)和μ(maxA))以及进水废水成分(X(I)、S(s)、X(s)和S(NH))非常敏感。