References
- B
aker R., Membrane technology and application, John Wiley & Sons, New York 2012. - B
atko K.M., Ślęzak -Prochazka I., Grzegorczyn S., Ślęzak A., Membrane transport in concentration polarization conditions: network thermodynamics model equations, J. Porous Med., 2014, 17, 573–586. - B
atko K.M., Ślęzak -Prochazka I., Ślęzak A., Network hybrid form of the Kedem-Katchalsky equations for non-homogenous binary non-electrolyte solutions: evaluation of Pij * Peusner’s tensor coefficients, Transp. Porous Med., 2015, 106, 1–20. - B
atko M., Ślęzak A., Grzegorczyn S., Bajdur W.M., The Rr form of the Kedem–Katchalsky–Peusner model equations for description of the membrane transport in concentration polarization conditions, Entropy 2020, 22, 857, 1–27. - C
aplan S.R., The degree of coupling and its relation to efficiency of energy conversion in multiple-flow systems, J. Theoret. Biol., 1965, 10, 209–235. - D
emirel Y., Nonequilibrium thermodynamics: transport and rate processes in physical, chemical and biological systems, Elsevier, Amsterdam 2014. - D
zierzkowska E., Ścisłowska -Czarnecka A., Matwally S., Romaniszyn D., Chadzińska M., Stodolak -Zych E., Porous poly(lactic acid) based fibres as drug carriers in active dressings, Acta Bioeng. Biomech., 2020, 22, 185–197. - G
rzegorczyn S., Ślęzak A., Kinetics of concentration boundary layers build up in the system consisted of microbial cellulose biomembrane and electrolyte solutions, J. Membr. Sci., 2007, 304, 148–155. - K
atchalsky A., Curran P.F., Nonequilibrium thermodynamics in biophysics, Harvard University Press, Cambridge 1965. - K
edem O., Caplan S.R., Degree of coupling and its relation to efficiency of energy conversion, Trans. Faraday Soc., 1965, 61, 1897–1911. - K
linkman H., Holtz M., Willgerodt W., Wilke G., Schoenfelder D., Nephrophan – eine neue dialysemembran, Zeit. Urolog., 1969, 4, 285–292. - O
nsager L., Reciprocal relations in irreversible processes, Phys. Rev., 1931, 78, 405–426. - P
eusner L., The principles of network thermodynamics: Theory and biophysical Applications, Harvard University, Ph.D. Thesis, Cambridge, Massachusetts, 1970. - P
eusner L., Hierarchies of irreversible energy conversion systems: A network thermodynamics approach. I. Linear steady state without storage, J. Theoret. Biol., 1983, 10, 27–39. - P
eusner L., Hierarchies of irreversible energy conversion systems. II. Network derivation of linear transport equations, J. Theoret. Biol., 1985, 115, 319–335. - P
eusner L., Studies in network thermodynamics, Elsevier, Amsterdam 1986. - R
ichter T., Keipert S., In vitro permeation studies comparing bovine nasal mucosa, porcine cornea and artificial membrane: androstendedione in microemulsions and their components, Europ. J. Pharma. Biopharm., 2004, 58, 137–143. - T
wardowski Z., Scholarly Review: History of hemodialyzers’ designs, Hemodialysis Inter., 2008, 12, 173–210. - Ś
lęzak A., Kucharzewski M., Franek A., Twardokęs W., The evaluation method of effectiveness of healing process of venous leg ulceration, Med. Eng. Phys., 2004, 26, 53–60. - Ś
lęzak -Prochazka I., Batko K.M., Wąsik S., Ślęzak A., H* Peusner’s form of the Kedem-Katchalsky equations fon on-homogeneous non-electrolyte binary solutions, Transp. Porous Med., 2016, 111, 457–477. - Ś
lęzak A., Grzegorczyn S., Batko K.M., Resistance coefficients of polymer membrane with concentration polarization, Transp. Porous Med., 2012, 95, 151–170. - Ś
lęzak A., Grzegorczyn S., Jasik -Ślęzak J., Michalska Małecka K., Natural convection as an asymmtrical factor of the transport through porous membrane, Trans. Porous Med., 2010, 84, 685–698. - Ś
lęzak A., Ślęzak -Prochazka I., Grzegorczyn S., Jasik Ślęzak J., Evaluation of S-entropy production in a singlemembrane system in concentration polarization conditions, Trans. Porous Med., 2017, 116, 941–957. - Ś
lęzak A., Grzegorczyn S., Ślęzak I.H., Bryll A., Study of the volume and solute flows through double-membraneous polymeric dressing with silver ions, J. Membr. Sci., 2006, 285, 68–74. - Ś
lezak A., Grzegorczyn S., Batko K., Pilis W., Biczak R., Membrane transport in concentration polarization conditions: Evaluation of S-entropy production for ternary non-electrolyte solutions, J. Non-Equilib. Thermodyn., 2020, 45, 385–399. - U
llah H., Santos H.A., Khan T., Application of bacterial cellulose in food, cosmetics and drug delivery, Cellulose, 2016, 23, 2291–2314. - W
inne D., Unstirred layer, source of biased Michaelis constant in membrane transport, Biochem. Biophys. Acta, 1973, 298, 27–31.