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Preparation and Properties of Cellulose/Waste Leather Buff Biocomposites

机译:纤维素/废皮革浅黄色生物复合材料的制备及性能

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摘要

The aim of the present work was to utilize waste leather buff (WLB) as filler in cellulose and make biocomposites for packaging applications such as wrappers. Cellulose was dissolved in the environmentally friendly ionic liquid 1-allyl-3-methylimidazolium chloride (AmimCl). To this solution, WLB was added in amounts of 5 to 25wt.% of cellulose. The cellulose and cellulose/WLB composite films were prepared by regenerating the corresponding cast solutions in a water coagulation bath followed by washing and drying. These films were tested for their tensile properties, thermal stability, and morphology. The tensile modulus and strength of the composite films were lower than those of the matrix. The lowering of the tensile modulus and strength with increasing WLB loading was attributed to the random orientation of the leather fibers of WLB in the composites. However, the % elongation at break of the composite films was found to be higher than that of the matrix and increased with increasing WLB content. The possible interaction between the matrix and WLB filler was probed using FT-IR analysis. The thermal stability of the composite films was higher than that of the matrix. The increase in thermal stability of the composite films was attributed to cross-linked collagen protein leather fibers in WLB. The fractographs of the composite films indicated good interfacial bonding between cellulose and leather fibers of WLB. These composite films may be considered for packaging and wrapping applications.
机译:当前工作的目的是利用废皮革抛光剂(WLB)作为纤维素中的填充剂,并制造用于包装应用(如包装纸)的生物复合材料。将纤维素溶解在环境友好的离子液体1-烯丙基-3-甲基咪唑鎓氯化物(AmimCl)中。向该溶液中,以5至25重量%的纤维素的量添加WLB。通过在水凝结浴中再生相应的浇铸溶液,然后洗涤和干燥来制备纤维素和纤维素/ WLB复合膜。测试了这些薄膜的拉伸性能,热稳定性和形态。复合膜的拉伸模量和强度低于基体。随着WLB负荷的增加,拉伸模量和强度的降低归因于复合物中WLB皮革纤维的无规取向。然而,发现复合膜的断裂伸长率%高于基质的断裂伸长率,并且随着WLB含量的增加而增加。使用FT-IR分析探查了基质与WLB填料之间可能的相互作用。复合膜的热稳定性高于基质。复合膜热稳定性的提高归因于WLB中交联的胶原蛋白皮革纤维。复合膜的分形图表明,WLB的纤维素和皮革纤维之间具有良好的界面粘合性。这些复合膜可考虑用于包装和包装应用。

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