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A zero-dimensional biofilm model for dynamic simulation of moving bed bioreactor systems: Model concepts, Peterson matrix, and application to a pilot-scale plant

机译:用于动态模拟移动床生物反应器系统的零维生物膜模型:模型概念,彼得森矩阵及其在中试规模工厂中的应用

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摘要

A zero-dimensional (0D) biofilm model for dynamic simulation of biological wastewater treatment systems is proposed and applied to a pilot-scale moving bed bioreactor (MBBR). The model, written in Peterson matrix format, does not describe biofilm structure in any form. Biochemical conversions in the model are based on the activated sludge model no. 1 (ASM1). Diffusional mass transport limitations are taken into account implicitly in the model using adapted half-saturation coefficients in the Monod terms of the model. In addition to biochemical conversions, the model contains attachment of particulates from the bulk of the liquid onto the biofilm and detachment of particulates from the biofilm into the bulk of the liquid. Model performance is evaluated using data originating from two intensive measurement campaigns covering 9 days of wastewater treatment with the pilot-scale MBBR. The process dynamics of the MBBR were well reproduced by the model, since a good fit between measured effluent ammonia and nitrate concentrations to the simulation results was obtained. Biofilm related parameters, like biofilm age, attachment rate and detachment rate, were extracted from the model.
机译:提出了用于生物废水处理系统动态模拟的零维(0D)生物膜模型,并将其应用于中试规模的移动床生物反应器(MBBR)。以彼得森矩阵格式编写的模型没有描述任何形式的生物膜结构。模型中的生化转化基于活性污泥模型No. 1(ASM1)。在模型的Monod项中,使用自适应的半饱和系数隐含地考虑了扩散物质的传输限制。除了生化转换外,该模型还包含来自大部分液体的颗粒附着到生物膜上以及来自生物膜的颗粒分离到大部分液体中的现象。使用来自两个密集测量活动的数据评估模型性能,该活动涉及使用中试规模MBBR处理9天的废水。该模型很好地再现了MBBR的过程动力学,因为获得的废水氨氮浓度和硝酸盐浓度与模拟结果非常吻合。从模型中提取生物膜相关参数,如生物膜年龄,附着率和脱离率。

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