Ślęzak Andrzej, Grzegorczyn Sławomir M
Department of Health Sciences and Physiotherapy, Collegium Medicum, Jan Dlugosz University, 13/15 Armia Krajowa Al, 42200 Częstochowa, Poland.
Department of Biophysics, Faculty of Medical Sciences in Zabrze, Medical University of Silesia, 19 H. Jordan Str., 41808 Zabrze, Poland.
Entropy (Basel). 2025 Feb 6;27(2):169. doi: 10.3390/e27020169.
Peusner's network thermodynamics (PNT) is an important way of describing processes in nonequilibrium thermodynamics. PNT allows energy transport and conversion processes in membrane systems to be described. This conversion concerns internal energy transformation into free and dissipated energies linked with the membrane transport of solutes. A transformation of the Kedem-Katchalsky (K-K) equations into the R variant of Kedem-Katchalsky-Peusner (K-K-P) equations was developed for the transport of binary electrolytic solutions through a membrane. The procedure was verified for a system in which a membrane Ultra Flo 145 Dialyser separated aqueous NaCl solutions. Peusner coefficients were calculated by the transformation of the K-K coefficients. Next, the coupling coefficients of the membrane processes and energy fluxes for electrolyte solutions transported through the membrane were calculated based on the Peusner coefficients. The efficiency of energy conversion in the membrane transport processes was estimated, and this coefficient increased nonlinearly with the increase in the solute concentration in the membrane. In addition, the energy fluxes as functions of ionic current density for constant solute fluxes were also investigated for membrane transport processes in the Ultra Flo 145 Dialyser membrane.
佩斯纳的网络热力学(PNT)是描述非平衡热力学过程的一种重要方式。PNT能够描述膜系统中的能量传输和转换过程。这种转换涉及内能转化为与溶质膜运输相关的自由能和耗散能。针对二元电解质溶液通过膜的传输,开发了将凯德姆 - 卡察尔斯基(K - K)方程转换为凯德姆 - 卡察尔斯基 - 佩斯纳(K - K - P)方程的R变体的方法。该方法在一个由膜Ultra Flo 145透析器分离NaCl水溶液的系统中得到了验证。通过K - K系数的转换计算出佩斯纳系数。接下来,基于佩斯纳系数计算了通过膜传输的电解质溶液的膜过程耦合系数和能量通量。估算了膜传输过程中的能量转换效率,该系数随着膜中溶质浓度的增加而非线性增加。此外,还研究了在Ultra Flo 145透析器膜的膜传输过程中,恒定溶质通量下能量通量作为离子电流密度函数的情况。