Characterization of membrane pore size using statistical model by facile method of air bubbling in liquid media

IF 3.7 3区 工程技术 Q2 ENGINEERING, CHEMICAL
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引用次数: 0

Abstract

Research has shown the correlation between porous membrane pore size and bubble formation including bubble size, frequency, and operating parameters. However, attempts to create a governing equation to establish this correlation have often suffered from low accuracy due to variable interactions. Therefore, it is necessary to identify the significant effects of membrane pore size on bubble formation to establish effective correlations. This study aimed to identify the significant effect of porous membrane pore size on bubble formation using analysis of variance (ANOVA) to establish a mathematical model that predicts porous membrane pore size using bubble formation. To achieve this, various porous membranes were fabricated by varying hydrophilic silica loadings. The resulting membranes were characterized regarding pore size and employed in an aeration device under variable air flow rates and inlet pressures to obtain bubble size and frequency data. JMP software developed a statistical model to characterize membrane pore sizes. The results show a significant effect of bubble formation information on pore size, with a p-value of 0.0089, R2 of 0.96, and root mean squared error (RMSE) value of 0.02. Validation of the model using three membranes demonstrated minor deviations of 0–6.5 %, emphasizing the model's effectiveness in predicting membrane pore size.

用统计模型表征膜孔径,在液体介质中采用简便的气泡法
研究表明,多孔膜孔径与气泡形成之间存在相关性,包括气泡大小、频率和操作参数。然而,由于变量之间的相互作用,试图建立一个指导方程来建立这种相关性的尝试往往存在准确性低的问题。因此,有必要确定膜孔径对气泡形成的显著影响,以建立有效的相关关系。本研究旨在利用方差分析(ANOVA)确定多孔膜孔径对气泡形成的显著影响,从而建立一个利用气泡形成预测多孔膜孔径的数学模型。为此,通过改变亲水性二氧化硅的负载量制造了各种多孔膜。在不同的空气流速和入口压力下,对所制成的膜的孔径进行表征,并在曝气装置中使用,以获得气泡大小和频率数据。JMP 软件开发了一个统计模型来表征膜的孔径。结果显示,气泡形成信息对孔径大小有明显影响,P 值为 0.0089,R2 为 0.96,均方根误差 (RMSE) 值为 0.02。使用三种膜对模型进行验证,结果表明偏差在 0-6.5 % 之间,强调了模型在预测膜孔径大小方面的有效性。
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来源期刊
Chemical Engineering Research & Design
Chemical Engineering Research & Design 工程技术-工程:化工
CiteScore
6.10
自引率
7.70%
发文量
623
审稿时长
42 days
期刊介绍: ChERD aims to be the principal international journal for publication of high quality, original papers in chemical engineering. Papers showing how research results can be used in chemical engineering design, and accounts of experimental or theoretical research work bringing new perspectives to established principles, highlighting unsolved problems or indicating directions for future research, are particularly welcome. Contributions that deal with new developments in plant or processes and that can be given quantitative expression are encouraged. The journal is especially interested in papers that extend the boundaries of traditional chemical engineering.
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