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重力在电化学膜电池中浓度场演化中的作用。

The Role of Gravity in the Evolution of the Concentration Field in the Electrochemical Membrane Cell.

作者信息

Batko Kornelia M, Ślęzak Andrzej, Bajdur Wioletta M

机构信息

Department of Business Informatics, University of Economics, 40287 Katowice, Poland.

Department of Innovation and Safety Management Systems, Technical University of Czestochowa, 42200 Czestochowa, Poland.

出版信息

Entropy (Basel). 2020 Jun 18;22(6):680. doi: 10.3390/e22060680.

Abstract

The subject of the study was the osmotic volume transport of aqueous CuSO and/or ethanol solutions through a selective cellulose acetate membrane (Nephrophan). The effect of concentration of solution components, concentration polarization of solutions and configuration of the membrane system on the value of the volume osmotic flux ( J v i r ) in a single-membrane system in which the polymer membrane located in the horizontal plane was examined. The investigations were carried out under mechanical stirring conditions of the solutions and after it was turned off. Based on the obtained measurement results J v i r , the effects of concentration polarization, convection polarization, asymmetry and amplification of the volume osmotic flux and the thickness of the concentration boundary layers were calculated. Osmotic entropy production was also calculated for solution homogeneity and concentration polarization conditions. Using the thickness of the concentration boundary layers, critical values of the Rayleigh concentration number ( R C r ), i.e., the switch, were estimated between two states: convective (with higher J v i r ) and non-convective (with lower J v i r ). The operation of this switch indicates the regulatory role of earthly gravity in relation to membrane transport.

摘要

该研究的主题是硫酸铜水溶液和/或乙醇溶液通过选择性醋酸纤维素膜(Nephrophan)的渗透体积传输。研究了溶液组分浓度、溶液浓度极化以及膜系统构型对单膜系统中体积渗透通量(Jvir)值的影响,其中聚合物膜位于水平面上。研究是在溶液机械搅拌条件下以及搅拌停止后进行的。基于获得的测量结果Jvir,计算了浓度极化、对流极化、体积渗透通量的不对称性和放大以及浓度边界层厚度的影响。还计算了溶液均匀性和浓度极化条件下的渗透熵产生。利用浓度边界层的厚度,估计了瑞利浓度数(Rcr)的临界值,即两种状态之间的转换:对流状态(Jvir较高)和非对流状态(Jvir较低)。这种转换的发生表明地球引力对膜传输具有调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9ce/7517220/7367ee7b8056/entropy-22-00680-g001.jpg

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