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New generic mathematical model for WWTP sludge digesters operating under aerobic and anaerobic conditions: Model building and experimental verification

机译:在好氧和厌氧条件下运行的污水处理厂污泥消化池的新通用数学模型:模型建立和实验验证

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摘要

This paper presents a new mathematical model developed to reproduce the performance of a generic sludge digester working either under aerobic or anaerobic operational conditions. The digester has been modelled as two completely mixed tanks associated with gaseous and liquid volumes. The conversion model has been developed based on a plant wide modelling methodology (PWM) and comprises biochemical transformations, physi-cochemical reactions and thermodynamic considerations. The model predicts the reactor temperature and the temporary evolution of an extensive vector of model components which are completely defined in terms of elemental mass fractions (C, H, O, N and P) and charge density. Thus, the comprehensive definition of the model components guarantees the continuity of elemental mass and charge in all the model transformations and between any two systems defined by the model. The aim of the generic digester model is to overcome the problems that arise when trying to connect aerobic and anaerobic digestion processes working in series or to connect water and sludge lines in a WWTP. The modelling methodology used has allowed the systematic construction of the biochemical model which acts as an initial illustrative example of an application that has been experimentally verified. The variation of the temperature is also predicted based on a thermal dynamic model. Real data from four different facilities and a straightforward calibration have been used to successfully verify the model predictions in the cases of mesophilic and thermo-philic anaerobic digestion as well as autothermal thermophilic aerobic digestion (ATAD). The large amount of data from the full scale ATAD and the anaerobic digestion pilot plants, all of them working under different conditions, has allowed the validation of the model for that case study.
机译:本文介绍了一种新的数学模型,该模型可以再现有氧或无氧运行条件下通用污泥消化器的性能。沼气池已建模为与气体和液体体积相关的两个完全混合的水箱。转换模型是基于全厂建模方法(PWM)开发​​的,包括生化转化,物理-化学反应和热力学考虑。该模型可预测反应堆温度以及大量模型成分的矢量的暂时演化,这些矢量完全由元素质量分数(C,H,O,N和P)和电荷密度定义。因此,模型组件的全面定义保证了在所有模型转换中以及模型定义的任何两个系统之间元素质量和电荷的连续性。通用蒸煮器模型的目的是克服试图将需氧和厌氧消化过程串联连接或将污水处理厂中的水和污泥管线连接时出现的问题。所使用的建模方法已允许系统地构建生化模型,该模型可作为已通过实验验证的应用程序的初始说明性示例。还基于热动力学模型预测温度的变化。在中温和嗜热厌氧消化以及自热嗜热需氧消化(ATAD)的情况下,已使用来自四个不同设施的真实数据和简单的校准方法成功验证了模型预测。来自全尺寸ATAD和厌氧消化试验工厂的大量数据(它们都在不同条件下运行)使该案例研究能够验证模型。

著录项

  • 来源
    《Water Research》 |2009年第18期|4626-4642|共17页
  • 作者单位

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain ATM (Asistencia Tecnologica Medioambiental S.A.) Epele Bailara, 29, 20120 Hernani, Spain;

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain TECNUN, School of Engineering, University of Navarra, Po. Manuel Lardizabal 15, 20018 San Sebastian, Spain;

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain AEMA S.L. Agua, Energia y Medio Ambiente Servicios Integrales S.L. Pol. Ind. El Pilar C/Fitero 9 Alfaro, Spain;

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain Navarra de Infraestructuras Locales, S. A. (NILSA) Auda. Baranain, 22, 31008 Pamplona, Spain;

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain TECNUN, School of Engineering, University of Navarra, Po. Manuel Lardizabal 15, 20018 San Sebastian, Spain;

    CEIT, Section of Environmental Engineering, P.O. Box 1555, San Sebastian, Spain TECNUN, School of Engineering, University of Navarra, Po. Manuel Lardizabal 15, 20018 San Sebastian, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerobic; anaerobic; dual digestion; plant wide modelling; temperature prediction; experimental verification;

    机译:有氧厌氧双重消化全厂建模;温度预测实验验证;

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