A Study of Ralex Membrane Morphology by SEM

被引:17
作者
Akberova, Elmara M. [1 ]
Vasil'eva, Vera I. [1 ]
Zabolotsky, Victor I. [2 ]
Novak, Lubos [3 ]
机构
[1] Voronezh State Univ, Dept Analyt Chem, Univ Skaya Pl 1, Voronezh 394018, Russia
[2] Kuban State Univ, Dept Phys Chem, Ul Stavropolskaya 149, Krasnodar 350040, Russia
[3] MEGA As, Vinici 87, Straz Podralskem 47127, Czech Republic
关键词
ralex ion-exchange membrane; microscopic analysis; structural inhomogeneity; ION-EXCHANGE MEMBRANES; SURFACE-MORPHOLOGY; ELECTROCONVECTION; ELECTRODIALYSIS; SYSTEMS; INHOMOGENEITY; TRANSPORT; MODEL; MK-40;
D O I
10.3390/membranes9120169
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A comparative analysis of the effect of the manufacturing technology of heterogeneousion-exchange membranes Ralex CM Pes manufactured by MEGA a.s. (Czech Republic) on the structural properties of their surface and cross section by SEM was carried out. The CM Pes membrane is a composite of a sulfonated ion-exchanger with inert binder of polyethylene and reinforcing polyester fiber. In the manufacture of membranes Ralex the influence of two factors was investigated. First, the time of ion-exchange grain millingvaried at a constant resin/polyethylene ratio. Second, the ratio of the cation-exchanger and the inert binder of polyethylene varied. It has been found that the membrane surface becomes more electrically homogeneous with the growth of the ion-exchanger loading and a decrease in its particle size. With an increase in the milling time of resin grainsfrom 5 to 80 min a more than 1.5-fold decrease in their radius and in the distance between them was revealed.Besides, there is a 1.5-fold decrease in the fraction, as well as in the size of pores and structure defects. The fraction of the ion-exchange phase on the membrane surface decreases by 7%. With an increase in the resin loading from 45 to 70 wt %, the growth of the fraction of conducting regions on the surface is almost twofold, while their sizes remain practically unchanged. More significant changes in the surface structure of the studied membranes are established in comparison with the cross section. An increase in the resin content in the membranes from 45 to 70 wt % corresponds to a 43% increment of its fraction on the cross-section.The increase in the ion-exchanger content of Ralex membranes is accompanied by the growth of the fraction of macropores and structure defects on the membrane surface by 70% and a twofold decrease in the distance between conducting zones.
引用
收藏
页数:13
相关论文
共 46 条
[1]   Effect of the sulfocation-exchanger dispersity on the surface morphology, microrelief of heterogeneous membranes and development of electroconvection in intense current modes [J].
Akberova, E. M. ;
Vasil'eva, V., I ;
Zabolotsky, V., I ;
Novak, L. .
JOURNAL OF MEMBRANE SCIENCE, 2018, 566 :317-328
[2]   Effect of calcium and carbonate concentrations on anionic membrane fouling during electrodialysis [J].
Araya-Farias, M ;
Bazinet, L .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2006, 296 (01) :242-247
[3]   Gypsum scaling of anion exchange membranes in electrodialysis [J].
Asraf-Snir, Meital ;
Gilron, Jack ;
Oren, Yoram .
JOURNAL OF MEMBRANE SCIENCE, 2016, 520 :176-186
[4]   Morphology and microtopology of cation-exchange polymers and the origin of the overlimiting current [J].
Balster, J. ;
Yildirim, M. H. ;
Stamatialis, D. F. ;
Ibanez, R. ;
Lammertink, R. G. H. ;
Jordan, V. ;
Wessling, M. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2007, 111 (09) :2152-2165
[5]   Impact of cation-exchange membrane scaling nature on the electrochemical characteristics of membrane system [J].
Belashova, E. ;
Mikhaylin, S. ;
Pismenskaya, N. ;
Nikonenko, V. ;
Bazinet, L. .
SEPARATION AND PURIFICATION TECHNOLOGY, 2017, 189 :441-448
[6]   WATER ELECTROTRANSPORT IN MEMBRANE SYSTEMS - EXPERIMENT AND MODEL DESCRIPTION [J].
BEREZINA, N ;
GNUSIN, N ;
DYOMINA, O ;
TIMOFEYEV, S .
JOURNAL OF MEMBRANE SCIENCE, 1994, 86 (03) :207-229
[7]   Characterization of ion-exchange membrane materials: Properties vs structure [J].
Berezina, N. P. ;
Kononenko, N. A. ;
Dyomina, O. A. ;
Gnusin, N. P. .
ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2008, 139 (1-2) :3-28
[8]  
BEREZINA NP, 1987, ELEKTROKHIMIYA, V23, P912
[9]   Heterogeneous ion-selective membranes: the influence of the inert matrix polymer on the membrane properties [J].
Bouzek, Karel ;
Moravcova, Sabina ;
Schauer, Jan ;
Brozova, Libuse ;
Pientka, Zbynek .
JOURNAL OF APPLIED ELECTROCHEMISTRY, 2010, 40 (05) :1005-1018
[10]   In situ investigation of electrical inhomogeneity of ion exchange membrane surface using scanning electrochemical microscopy [J].
Butylskii, D. Yu. ;
Mareev, S. A. ;
Nikonenko, V. V. ;
Pismenskaya, N. D. ;
Larchet, C. ;
Dammak, L. ;
Grande, D. ;
Apel, P. Yu. .
PETROLEUM CHEMISTRY, 2016, 56 (11) :1006-1013