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由单宁酸、壳聚糖和虫胶配制而成的用于包装材料的生物基粘合剂。

Bio-Based Adhesives Formulated from Tannic Acid, Chitosan, and Shellac for Packaging Materials.

作者信息

Vrabič-Brodnjak Urška

机构信息

Department of Textiles, Graphic Arts and Design, Faculty of Natural Sciences and Engineering, University of Ljubljana, 1000 Ljubljana, Slovenia.

出版信息

Polymers (Basel). 2023 Mar 4;15(5):1302. doi: 10.3390/polym15051302.

Abstract

The aim of this study was to develop bio-based adhesives that can be used for various packaging papers. In addition to commercial paper samples, papers produced from harmful plant species in Europe, such as Japanese Knotweed and Canadian Goldenrod, were used. In this research, methods were developed to produce bio-based adhesive solutions in combinations of tannic acid, chitosan, and shellac. The results showed that the viscosity and adhesive strength of the adhesives were best in solutions with added tannic acid and shellac. The tensile strength with adhesives of tannic acid and chitosan was 30% better than with commercial adhesives and 23% for combinations of shellac and chitosan. For paper from Japanese Knotweed and Canadian Goldenrod, the most durable adhesive was pure shellac. Because the surface morphology of the invasive plant papers was more open and had numerous pores compared to the commercial papers, the adhesives penetrated the paper structure and filled the voids. There was less adhesive on the surface and the commercial papers achieved better adhesive properties. As expected, the bio-based adhesives also showed an increase in peel strength and exhibited favorable thermal stability. In summary, these physical properties support the use of bio-based adhesives use in different packaging applications.

摘要

本研究的目的是开发可用于各种包装纸的生物基粘合剂。除了商业纸样外,还使用了欧洲有害植物物种(如虎杖和加拿大一枝黄花)制成的纸张。在这项研究中,开发了以单宁酸、壳聚糖和虫胶组合生产生物基粘合剂溶液的方法。结果表明,在添加了单宁酸和虫胶的溶液中,粘合剂的粘度和粘合强度最佳。单宁酸和壳聚糖粘合剂的拉伸强度比商业粘合剂高30%,虫胶和壳聚糖组合的拉伸强度高23%。对于虎杖和加拿大一枝黄花制成的纸张,最耐用的粘合剂是纯虫胶。由于入侵植物纸张的表面形态比商业纸张更开放且有许多孔隙,粘合剂渗透到纸张结构中并填充了空隙。表面的粘合剂较少,商业纸张具有更好的粘合性能。正如预期的那样,生物基粘合剂的剥离强度也有所提高,并表现出良好的热稳定性。总之,这些物理性能支持生物基粘合剂在不同包装应用中的使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afd2/10007413/8e9550a12940/polymers-15-01302-g001.jpg

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