Ghaffari Roujin, Arumughan Vishnu, Larsson Anette
Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Gothenburg, Sweden; Wallenberg Wood Science Center, Chalmers University of Technology, Gothenburg, Sweden.
Department of Bioproducts and Biosystems, Aalto University, Espoo, Finland.
J Colloid Interface Sci. 2024 Jan;653(Pt B):1662-1670. doi: 10.1016/j.jcis.2023.09.037. Epub 2023 Sep 13.
The presence of ions in a solution is anticipated to induce distinct effects on macromolecules. Consequently, the tuning of adsorption and mass transfer of lignin molecules can be achieved by incorporating ions with chaotropic or kosmotropic characteristics. This study examines the adsorption and mass transfer behavior of lignin molecules across model cellulose membranes in presence of ions from the Hofmeister series. Experimental investigations encompassed the use of diffusion cells to quantify lignin's mass transfer through the membranes, and quartz crystal microbalance with dissipation (QCM-D) monitoring was used for adsorption studies. Notably, at high ion concentrations, the mass transport rate of lignin was observed to be lower in the presence of highly hydrated (kosmotropic) sulfate ions, conforming to the Hofmeister series. Intriguingly, this relationship was not apparent at lower ion concentrations. Furthermore, QCM-D experiments indicated that lignin displayed higher adsorption onto the cellulose surface when exposed to less hydrated (chaotropic) nitrate anions. This behavior can be rationalized by considering the system's increased entropy gain, facilitated by the release of adsorbed ions and water molecules from the cellulose surface upon lignin adsorption. This study highlights the complexity of ion-specific effects on mass transfer and adsorption processes and their dependency on ion concentrations.
溶液中离子的存在预计会对大分子产生显著影响。因此,通过引入具有离液序列高或盐析序列高特性的离子,可以实现木质素分子吸附和传质的调控。本研究考察了霍夫迈斯特序列离子存在下木质素分子在模型纤维素膜上的吸附和传质行为。实验研究包括使用扩散池来量化木质素通过膜的传质,以及使用耗散型石英晶体微天平(QCM-D)监测进行吸附研究。值得注意的是,在高离子浓度下,在高度水合(盐析序列高)的硫酸根离子存在下,观察到木质素的传质速率较低,符合霍夫迈斯特序列。有趣的是,这种关系在较低离子浓度下并不明显。此外,QCM-D实验表明,当暴露于水合程度较低(离液序列高)的硝酸根阴离子时,木质素在纤维素表面的吸附更高。这种行为可以通过考虑系统熵增的增加来解释,木质素吸附时从纤维素表面释放吸附的离子和水分子促进了熵增。本研究突出了离子特异性效应在传质和吸附过程中的复杂性及其对离子浓度的依赖性。