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Modeling of preparation conditions of PES ultrafiltration hollow fiber membranes using statistical regression techniques

机译:统计回归技术模拟PES超滤中空纤维膜的制备条件

摘要

Mathematical modeling of the spinning process is crucial for a better understanding of the process variables and process functionality in membrane development. Due to the broad use and key importance of mathematical models in chemical process engineering, experimental design is becoming essential for the rapid development and validation of these empirical models. This work used the design of experiment methodology and aimed to predict the performance of ultrafiltration systems for water treatment by considering the statistical regression technique as an important approach for modeling flux. The utilization of regression modeling was also explored to show the principle elements for predicting flux in the spinning process. In order to investigate how proficient the statistical regression technique is at approximating the predicted value for flux, a real spinning experiment was conducted in this study. In this experiment, 30 samples of data were collected based on a half fractional factorial experiment with design resolution V, as well as 4 replications of center points and 10 axial points. The spinning factors that were investigated are the dope extrusion rate, air gap length, coagulation bath temperature, bore fluid ratio, and post-treatment time for predicting the corresponding flux. The regression model obtained shows that there is a correlation between the experimental data and predicted values. The results of the proposed model can be used to give a good prediction of the spinning process during membrane fabrication.
机译:纺丝过程的数学建模对于更好地了解膜开发过程中的过程变量和过程功能至关重要。由于数学模型在化学过程工程中的广泛使用和关键重要性,因此实验设计对于这些经验模型的快速开发和验证变得至关重要。这项工作使用了实验方法的设计,旨在通过将统计回归技术视为建模流量的重要方法来预测超滤系统在水处理中的性能。还探索了利用回归模型来显示预测纺丝过程中通量的基本要素。为了研究统计回归技术在逼近通量预测值方面的熟练程度,在这项研究中进行了一次实际的纺纱实验。在该实验中,基于具有设计分辨率V的半分数阶乘实验以及30个中心点和10个轴向点的重复,收集了30个数据样本。研究的纺丝因素是浓液挤出速率,气隙长度,凝固浴温度,孔液比和用于预测相应通量的后处理时间。获得的回归模型表明,实验数据与预测值之间存在相关性。所提出模型的结果可用于对膜制造过程中的纺丝过程进行良好的预测。

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