Laboratoire de Chimie des Polymères Organiques, Université de Bordeaux, CNRS, Bordeaux INP, UMR 5629, 16 Avenue Pey-Berland, 33600 Pessac, France.
Papeterie Zuber Rieder, rue Ernest Zuber, 25320 Boussières, France.
Molecules. 2022 Dec 14;27(24):8886. doi: 10.3390/molecules27248886.
The objective of this study was to increase the water resistance of paper while providing fungal resistance using a bio-based coating made from chitosan. The water resistance was improved through the surface control of roughness using modified calcium carbonate particles. The higher the quantity of particles in the film-forming solution, the higher the surface hydrophobicity of the paper. The addition of particles was found to counterbalance the chitosan hydrophilicity through the control of the coatings' penetration in the paper bulk. As a consequence, the wetting time and liquid water resistance were enhanced. The antifungal activity of the film-forming solutions and coated paper was also investigated against the growth of , which was selected as a model strain able to contaminate paper materials. The results reveal that the antifungal activity of chitosan was improved by a possible synergic effect with the bicarbonate ions from the mineral particles.
本研究旨在提高纸张的耐水性,同时利用壳聚糖制成的生物基涂层提供抗真菌性。通过使用改性碳酸钙颗粒来控制表面粗糙度,从而提高了纸张的耐水性。在成膜溶液中添加更多的颗粒会提高纸张的表面疏水性。通过控制涂层在纸内的渗透,可以抵消壳聚糖的亲水性。因此,润湿时间和耐液态水性能得到了提高。还研究了成膜溶液和涂覆纸张对 的抗菌活性, 被选为一种能够污染纸制品的模式菌株。结果表明,壳聚糖的抗真菌活性可能通过与矿物颗粒中的碳酸氢根离子的协同作用得到了提高。