Department of Engineering, RU INSTM, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy.
Department of Engineering, RU INSTM, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy; Irritec S.p.A., Via Industriale sn, 98070 Rocca di Caprileone, Italy.
Int J Biol Macromol. 2022 Sep 30;217:161-170. doi: 10.1016/j.ijbiomac.2022.07.048. Epub 2022 Jul 10.
Lignin can be obtained as a byproduct during cellulose-rich pulp fibers production and it is habitually treated as waste or intended for low-value destinations. However, due to UV absorption and mechanical properties, lignin can contribute to the fabrication of biodegradable blown films with superior performances. In this study, it was established the suitability of lignin for manufacturing biocomposite PBAT blown films with higher stiffness and photo-oxidation resistance. The effect of the filler concentration on the melt rheological behavior in non-isothermal elongational flow was investigated. The results allowed us to choose the correct filler concentration for producing films through a film blowing operation. The PBAT/lignin blown film composites displayed an increase of the elastic modulus if compared to neat PBAT films without affecting their elongation at break. Furthermore, the filler delayed the photo-oxidative degradation of PBAT hence potentially allowing open-air applications.
木质素可以在富含纤维素的纸浆纤维生产过程中作为副产品获得,通常被视为废物或只能用于低附加值的用途。然而,由于其具有紫外线吸收和机械性能,木质素可以有助于制造具有卓越性能的可生物降解吹塑薄膜。在本研究中,已经确定了木质素用于制造具有更高刚性和耐光氧化性能的生物复合材料 PBAT 吹塑薄膜的适用性。研究了填充剂浓度对非等温拉伸流变性的影响。研究结果允许我们通过吹膜操作选择合适的填充剂浓度来生产薄膜。与未添加填充剂的纯 PBAT 薄膜相比,PBAT/木质素吹塑薄膜复合材料的弹性模量增加,而断裂伸长率不受影响。此外,该填充剂延迟了 PBAT 的光氧化降解,因此有可能允许在露天环境下使用。