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具有改善耐水性的纤维素和柳树皮提取物生物活性纤维泡沫薄膜

Bioactive Fiber Foam Films from Cellulose and Willow Bark Extract with Improved Water Tolerance.

作者信息

Lohtander Tia, Koso Tetyana, Huynh Ngoc, Hjelt Tuomo, Gestranius Marie, King Alistair W T, Österberg Monika, Arola Suvi

机构信息

Biomass Processing and Products, VTT Technical Research Centre of Finland Ltd, Espoo FI-02044, Finland.

Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, Espoo FI-02044, Finland.

出版信息

ACS Omega. 2024 Feb 9;9(7):8255-8265. doi: 10.1021/acsomega.3c08906. eCollection 2024 Feb 20.

Abstract

Cellulose-based materials are gaining increasing attention in the packaging industry as sustainable packaging material alternatives. Lignocellulosic polymers with high quantities of surface hydroxyls are inherently hydrophilic and hygroscopic, making them moisture-sensitive, which has been retarding the utilization of cellulosic materials in applications requiring high moisture resistance. Herein, we produced lightweight all-cellulose fiber foam films with improved water tolerance. The fiber foams were modified with willow bark extract (WBE) and alkyl ketene dimer (AKD). AKD improved the water stability, while the addition of WBE was found to improve the dry strength of the fiber foam films and bring additional functionalities, that is, antioxidant and ultraviolet protection properties, to the material. Additionally, WBE and AKD showed a synergistic effect in improving the hydrophobicity and water tolerance of the fiber foam films. Nuclear magnetic resonance (NMR) spectroscopy indicated that the interactions among WBE, cellulose, and AKD were physical, with no formation of covalent bonds. The findings of this study broaden the possibilities to utilize cellulose-based materials in high-value active packaging applications, for instance, for pharmaceutical and healthcare products or as water-resistant coatings for textiles, besides bulk packaging materials.

摘要

纤维素基材料作为可持续包装材料替代品,在包装行业正受到越来越多的关注。含有大量表面羟基的木质纤维素聚合物本质上具有亲水性和吸湿性,这使得它们对水分敏感,从而阻碍了纤维素材料在需要高耐湿性的应用中的使用。在此,我们制备了具有更高耐水性的轻质全纤维素纤维泡沫薄膜。这些纤维泡沫用柳树皮提取物(WBE)和烷基烯酮二聚体(AKD)进行了改性。AKD提高了水稳定性,而添加WBE则提高了纤维泡沫薄膜的干强度,并为材料带来了额外的功能,即抗氧化和紫外线防护性能。此外,WBE和AKD在提高纤维泡沫薄膜的疏水性和耐水性方面表现出协同效应。核磁共振(NMR)光谱表明,WBE、纤维素和AKD之间的相互作用是物理性的,没有形成共价键。本研究的结果拓宽了纤维素基材料在高价值活性包装应用中的可能性,例如用于药品和医疗保健产品,或作为纺织品的防水涂层,以及用于大宗包装材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54cd/10883019/45b497053fde/ao3c08906_0006.jpg

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