首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >On the experimental verification of an electrodialysis simulation model for optimal stack configuration design through solver software
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On the experimental verification of an electrodialysis simulation model for optimal stack configuration design through solver software

机译:通过求解器软件对电渗析仿真模型进行最佳烟囱配置设计的实验验证

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摘要

Electrodialysis (ED) is well known as a desalination method. In the ED process, anions and cations are transported respectively through anion and cation conductive membranes, while applying an electric field. Specific process membrane stack parameters are determining the ion transport, making ED a relatively complex process. Mathematical modeling is reported in literature, enhancing the insight in the phenomena and allowing the optimization of the stack design and process conditions for a specific application. A comprehensible software based design procedure, using such a mathematical model, is therefore interesting for the industrial ED user. As a result, a selected model was implemented in a solver software. An experimental verification of the software was then performed, using an ED pilot with an industrial type of stack and sodium chloride model solutions. Prior to this, limiting current densities were measured in a small stack. The large stack was used to verify the ohmic region and to obtain basic stack model parameters. In a next step, limiting current density conditions in the large stack were theoretically evaluated in the model calculations for design purposes and correlated with the experimental results. These verifications showed that the software approach is relevant for the estimation of an optimal stack geometry. A number of model restrictions are however indicated as well and some recommendations are made with respect to the expansion and fine tuning of the selected model.
机译:电渗析(ED)是众所周知的脱盐方法。在ED过程中,在施加电场的同时,阴离子和阳离子分别通过阴离子和阳离子导电膜传输。特定的工艺膜堆参数决定了离子的传输,使ED成为一个相对复杂的工艺。文献报道了数学建模,可以增强对现象的洞察力,并可以针对特定应用优化堆栈设计和工艺条件。因此,对于工业ED用户来说,使用这样的数学模型的基于软件的可理解的设计过程是很有趣的。结果,在求解器软件中实现了所选模型。然后,使用带有工业类型烟囱和氯化钠模型溶液的ED引燃器对软件进行实验验证。在此之前,在一个小的电池堆中测量极限电流密度。大烟囱用于验证欧姆区域并获得基本烟囱模型参数。下一步,出于设计目的,在模型计算中从理论上评估了大烟囱中的极限电流密度条件,并将其与实验结果相关联。这些验证表明,软件方法与最佳烟囱几何形状的估计有关。但是,也指出了许多模型限制,并针对所选模型的扩展和微调提出了一些建议。

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