Energy conversion in Textus Bioactiv Ag membrane dressings using Peusner's network thermodynamic descriptions.

Q3 Medicine Polimery w medycynie Pub Date : 2022-07-01 DOI:10.17219/pim/153522
Kornelia M Batko, Izabella Ślęzak-Prochazka, Sławomir Marek Grzegorczyn, Anna Pilis, Paweł Dolibog, Andrzej Ślęzak
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引用次数: 1

Abstract

Background: The Textus Bioactiv Ag membrane is an active dressing for the treatment of chronic wounds such as venous stasis ulcers and burns.

Objectives: Determination of the transport and internal energy conversion properties of the Textus Bioactiv Ag membrane using the Kedem-Katchalsky-Peusner model. This model introduces the coefficients Lij necessary to calculate the degree of coupling (lij, QL), energy conversion efficiency (eij), dissipated energy (S-energy), free energy (F-energy), and internal energy (U-energy).

Material and methods: The research material was the Textus Bioactiv Ag membrane that is used as an active dressing in the treatment of difficult-to-heal wounds, and KCl aqueous solutions. The research methods employed Peusner's formalism of network thermodynamics and Kedem and Katchalsky's thermodynamics of membrane processes. To calculate the Lij coefficients, we used hydraulic conductivity (Lp), diffusion conductivity (ů) and reflection (ó) coefficients to perform experimental measurements in different conditions.

Results: The Lp coefficient for the Textus Bioactiv Ag membrane is nonlinearly dependent on the average concentrations of the solutions. In turn, the ů and ó coefficients are nonlinearly dependent on the differences in osmotic pressures (Äđ). An increase in the Äđ causes the Textus Bioactiv Ag membrane to become more permeable and less selective for KCl solutions. The coefficients of Peusner (Lij), couplings (lij, QL), energy conversion efficiency (eij), S-energy, F-energy, and U-energy also depend nonlinearly on Äđ. Our results showed that for higher concentrations of KCl solutions transported through the Textus Bioactiv Ag membrane, the coupling and energy conversion coefficients were greater for larger Äđ up to their maximum values for large Äđ. Coupling of the membrane structure with the electrolyte flux through the membrane is observed for Äđ greater than 10 kPa.

Conclusions: Textus Bioactiv Ag membrane dressings possess the properties of a solution component separator as well as an internal energy converter.

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利用Peusner网络热力学描述的texus生物活性Ag膜敷料的能量转换。
背景:texus生物活性银膜是一种治疗慢性伤口如静脉淤积性溃疡和烧伤的活性敷料。目的:利用Kedem-Katchalsky-Peusner模型测定texus生物活性Ag膜的输运和内能转换特性。该模型引入了计算耦合度(Lij, QL)、能量转换效率(eij)、耗散能(S-energy)、自由能(F-energy)和内能(U-energy)所需的系数Lij。材料与方法:研究材料为用于治疗难愈合伤口的活性敷料的texus生物活性Ag膜和KCl水溶液。研究方法采用了Peusner的网络热力学形式论和Kedem和Katchalsky的膜过程热力学。为了计算Lij系数,我们使用了不同条件下的水力传导性(Lp)、扩散传导性(dv)和反射性(ó)系数进行了实验测量。结果:texus生物活性银膜的Lp系数与溶液的平均浓度呈非线性关系。反过来,系数和ó是非线性依赖于渗透压的差异(Äđ)。Äđ的增加导致Textus生物活性Ag膜变得更具渗透性,对KCl溶液的选择性更低。Peusner (Lij)、耦合(Lij, QL)、能量转换效率(eij)、s -能量、f -能量和u -能量的系数也非线性地依赖于Äđ。我们的研究结果表明,对于通过Textus bioactive Ag膜的高浓度KCl溶液,耦合系数和能量转换系数随着Äđ的增大而增大,直到Äđ的最大值。在Äđ大于10 kPa时,观察到膜结构与通过膜的电解质通量的耦合。结论:texus生物活性银膜敷料既具有分离溶液成分的功能,又具有内部能量转换器的功能。
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来源期刊
Polimery w medycynie
Polimery w medycynie Medicine-Medicine (all)
CiteScore
3.30
自引率
0.00%
发文量
9
审稿时长
53 weeks
期刊最新文献
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