Národní úložiště šedé literatury Nalezeno 11 záznamů.  1 - 10další  přejít na záznam: Hledání trvalo 0.00 vteřin. 
Influence of Surface Treatment of Thin-Film Composite Membrane on Separation of Carbon Dioxide from Biogas.
Morávková, Lenka ; Kárászová, Magda ; Petrusová, Zuzana ; Izák, Pavel
The effect of the various wetting procedure on the membrane performance was studied [1]. Spraying is clearly more efficient than spreading water on the top of the membrane with a brush and results in higher methane purity. Spraying ensures a more uniform distribution of the water on the skin layer of the membrane, leading to much higher CO2 permeation through the membrane and higher CH4 content in the retentate stream.
Plný tet: Moravkova_ICCT_2019 - Stáhnout plný textDOCX
Plný text: content.csg - Stáhnout plný textDOCX
The Influence of Surface Treatment and Activation of Thin Film Composite Membranes with Plasma Discharge and Determination of Their Physicochemical Properties.
Slepička, P. ; Setničková, Kateřina ; Petrusová, Zuzana ; Slepičková-Kasálková, N. ; Kolská, Z. ; Siegel, J. ; Jansen, J. C. ; Esposito, E. ; Fuoco, A. ; Švorčík, V. ; Izák, Pavel
In this work we have focused on the surface treatment and activation of membranes (73 AC and 82 V) with plasma discharge and determination of their physicochemical properties. The surface morphology, wettability, zeta potential of pristine and plasma- treated membranes were tested and compared.
Regeneration of TFC PA Membrane Used for Permation of Hexane Vapours.
Petrusová, Zuzana ; Morávková, Lenka ; Štefková, V. ; Machanová, Karolina ; Jandová, Věra ; Koštejn, Martin ; Izák, Pavel ; Jansen, J.
This contribution is accomplished by the study of the membrane affinity via contact angle measurements and by structural analysis via electron he transport properties of the TFC PA were studied at various experimental conditions and the obtained results will be discussed.
Plný tet: SKMBT_C22018060513582 - Stáhnout plný textPDF
Plný text: content.csg - Stáhnout plný textPDF
Development of Vapour Permeation Apparatus.
Morávková, Lenka ; Vejražka, Jiří ; Petrusová, Zuzana
This contribution includes the main information about development of test-stand apparatus for vapour permeation at the Institute of Chemical Process Fundamentals at the Czech Academy of Sciences.
Plný tet: SKMBT_C22018100509390 - Stáhnout plný textPDF
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Food Additives – Yes or No?
Morávková, Lenka ; Matějková, Martina ; Petrusová, Zuzana ; Šolcová, Olga
The aim of this contribution is to show the advantages or disadvantages of the food additives.
Plný tet: SKMBT_C22017112810170 - Stáhnout plný textPDF
Plný text: content.csg - Stáhnout plný textPDF
Separation of Gasses by Supported Liquid Membranes.
Izák, Pavel ; Žitková, Andrea ; Žák, Michal ; Vejražka, Jiří ; Kárászová, Magda ; Petrusová, Zuzana
Two swollen polyamide thin-film composite membranes were tested for effective CO2/CH4 separation. It was found that the water wettability has a key role for the separation of binary mixture representing a raw biogas, i.e. containing CO2 and CH4. The transport properties were analyzed by means of a mathematical model simulating gas permeation. A new modification of the mass transport coefficient model provided the concentration profiles of individual components on both sides of the membrane (inaccessible in experiments). Furthermore, the model enabled the evaluation of the mass transport coefficients of the gases in the mixture under varying stream flow rates and arrangements with respect to the membrane separation cell size. Therefore, the possibility of scale-up was discussed for both membranes and flow cell arrangement. Although the mathematical model was developed for a flat sheet membrane configuration, the results can be applied for a real spiral wound module with a wider surface.
Plný tet: SKMBT_C22017112810150 - Stáhnout plný textPDF
Plný text: content.csg - Stáhnout plný textPDF

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