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首页> 外文期刊>The Science of the Total Environment >Application of a mathematical model to predict simultaneous reactions in anaerobic plug-flow reactors as a primary treatment for constructed wetlands
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Application of a mathematical model to predict simultaneous reactions in anaerobic plug-flow reactors as a primary treatment for constructed wetlands

机译:应用数学模型预测厌氧活塞流反应器中的同时反应,作为人工湿地的主要处理方法

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Anaerobic digestion technologies offer a set of advantages when they are implemented as a primary treatment phase prior to the use of constructed wetland systems in low cost wastewater facilities. The aim of this study is to describe a model capable of reflecting the complex functioning of anaerobic lagoons, subject to continuous flux in the feed pipe, taking into account that physicochemical properties are subject to a concentration gradient and biochemical ones to simultaneous reactions which depend on each other. Based on both Stokes and advection-diffusion-reaction equations, the proposed model includes twenty-one variables to describe hydraulic, physical, biochemical and physicochemical characteristics that take place in different points of the system and at different moments of time. Drawn up by the International Water Association, the anaerobic digestion model ADM1 is included for the purpose of incorporating the anaerobic processes in the calculation. The finite element method was used to solve the nonlinear, second order partial differential equations of the model. The calculation strategy was designed using a flowchart. Using the open-source FreeFem+ + software, a simulation of the mathematical model, in bi-dimensional space, is presented to demonstrate the dynamic behaviour of the proposed model. This yields essential information about the performance of the substrate, cells, and the biochemical reaction products in each of the points within the reactor. Simulations show the potential of this methodology to carry out studies of the behaviour of each of the variables contemplated in the model, as well as comparative studies of the various possible options. In addition, this methodology can be used to help modify the behaviour of the variables based on digester geometry and the boundary values the system is subject to. From the results, it can be concluded that the proposed methodology can be a useful tool for calculating and designing the aforementioned synergistic systems of anaerobic digester plug-flow reactors and constructed wetlands.
机译:当厌氧消化技术在低成本污水处理设施中使用人工湿地系统之前作为主要处理阶段实施时,它们具有一系列优势。这项研究的目的是描述一个能够反映厌氧泻湖复杂功能的模型,该模型受进料管中连续通量的影响,同时考虑到理化特性受浓度梯度的影响,而生化特性受同时反应的影响,取决于彼此。基于斯托克斯方程和对流扩散反应方程,所提出的模型包括二十一个变量,用于描述在系统的不同点和不同时间发生的水力,物理,生化和理化特性。由国际水协会(International Water Association)拟定的厌氧消化模型ADM1被包括在内,目的是将厌氧过程纳入计算中。使用有限元方法求解模型的非线性二阶偏微分方程。使用流程图设计了计算策略。使用开源的FreeFem ++软件,在二维空间中对数学模型进行了仿真,以证明所提出模型的动态行为。这产生了关于反应器内每个点的底物,细胞和生化反应产物性能的基本信息。仿真表明,这种方法有潜力进行模型中预期的每个变量的行为研究,以及各种可能选择方案的比较研究。此外,此方法可用于帮助根据消化器的几何形状和系统所受的边界值来修改变量的行为。从结果可以得出结论,所提出的方法可以作为计算和设计厌氧消化器推流反应器和人工湿地的上述协同系统的有用工具。

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