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Optimal design of experiments for parameter identification in electrodialysis models

机译:电渗析模型参数辨识实验的优化设计

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摘要

The Nernst-Planck approach, previously used to model the electrodialytic recovery of uni-, di or tri-valent electrolytes, was used to accomplish the desalination of concentrated brines with an initial NaCl concentration up to 4.6 kmol m(-3). The complexity of the proposed model is such that an extensive experimentation is required for a statistically sound estimation of the relevant model parameters, including solute (t(B)) and water (t(w)) transport numbers through the ion-selective membranes; solute (L-B) and water (L-w) transport rate by diffusion; average electro-membrane resistance (R). A model-based design of experiments (MBDoE) approach is proposed in this paper to minimise the number of trials and resources required for model identification. The use of this approach in an experimental case study allowed for a dramatic reduction of the experimentation time from 1080 min (corresponding to a classical experimentation with multiple batch desalination trials) to 30-60min corresponding to a single optimal batch desalination experiment. The results obtained show the potential of MBDoE for quick development and assessment of electrodialysis models, where highly predictive capability can be achieved with the minimum experimental time and waste of resources.
机译:Nernst-Planck方法先前用于模拟单价,二价或三价电解质的电渗析回收率,用于完成浓缩盐水的脱盐,其初始NaCl浓度最高为4.6 kmol m(-3)。所提出模型的复杂性使得需要对相关模型参数进行统计上合理的估计,包括通过离子选择膜的溶质(t(B))和水(t(w))传输数,需要进行大量实验。溶质(L-B)和水(L-w)的扩散速率;平均电膜电阻(R)。本文提出了一种基于模型的实验设计(MBDoE)方法,以最大程度地减少模型识别所需的试验次数和资源。在实验案例研究中使用这种方法可以将实验时间从1080分钟(对应于具有多个分批脱盐试验的经典实验)显着减少至30-60分钟(对应于单个最佳分批脱盐实验)。所获得的结果表明MBDoE在快速开发和评估电渗析模型方面具有潜力,其中可以用最少的实验时间和资源浪费来实现高度预测的能力。

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