Polymer Institute, Slovak Academy of Sciences, Dubravská Cesta 9, 845 41 Bratislava, Slovakia.
Centre for Advanced Materials Application, Slovak Academy of Sciences, Dubravská Cesta 9, 845 11 Bratislava, Slovakia.
Int J Mol Sci. 2020 Dec 18;21(24):9678. doi: 10.3390/ijms21249678.
The utilization of keratin waste in new materials formulations can prevent its environmental disposal problem. Here, novel composites based on biodegradable blends consisting of poly(lactic acid) (PLA) and poly(3-hydroxybutyrate) (PHB), and filled with hydrolyzed keratin with loading from 1 to 20 wt % were prepared and their properties were investigated. Mechanical and viscoelastic properties were characterized by tensile test, dynamic mechanical thermal analysis (DMTA) and rheology measurements. The addition of acetyltributyl citrate (ATBC) significantly affected the mechanical properties of the materials. It was found that the filled PLA/PHB/ATBC composite at the highest keratin loading exhibited similar shear moduli compared to the un-plasticized blend as a result of the much stronger interactions between the keratin and polymer matrix compared to composites with lower keratin content. The differences in dynamic moduli for PLA/PHB/ATBC blend filled with keratin depended extensively on the keratin content while loss the factor values progressively decreased with keratin loading. Softening interactions between the keratin and polymer matrix resulted in lower glass transitions temperature and reduced polymer chain mobility. The addition of keratin did not affect the extent of degradation of the PLA/PHB blend during melt blending. Fast hydrolysis at 60 °C was observed for composites with all keratin loadings. The developed keratin-based composites possess properties comparable to commonly used thermoplastics applicable for example as packaging materials.
角蛋白废弃物在新材料配方中的利用可以防止其对环境的处置问题。在这里,制备了基于可生物降解共混物的新型复合材料,该共混物由聚乳酸(PLA)和聚(3-羟基丁酸酯)(PHB)组成,并填充了水解角蛋白,填充量为 1 至 20wt%,并研究了其性能。通过拉伸试验、动态力学热分析(DMTA)和流变学测量对力学和粘弹性性能进行了表征。乙酰基三丁酸酯(ATBC)的添加显著影响了材料的力学性能。结果发现,在最高角蛋白负载下填充的 PLA/PHB/ATBC 复合材料表现出与未增塑共混物相似的剪切模量,这是由于角蛋白与聚合物基质之间的相互作用比低角蛋白含量的复合材料强得多。填充角蛋白的 PLA/PHB/ATBC 共混物的动态模量差异很大程度上取决于角蛋白的含量,而损耗因子值随着角蛋白负载的增加逐渐降低。角蛋白与聚合物基质之间的软化相互作用导致较低的玻璃化转变温度和聚合物链的流动性降低。角蛋白的添加对 PLA/PHB 共混物在熔融共混过程中的降解程度没有影响。在 60°C 下观察到所有角蛋白负载复合材料的快速水解。所开发的角蛋白基复合材料具有与常用热塑性塑料相当的性能,可适用于包装材料等。