Fortunati Elena, Puglia Debora, Iannoni Antonio, Terenzi Andrea, Kenny José Maria, Torre Luigi
Civil and Environmental Engineering Department, University of Perugia, UdR INSTM, Strada di Pentima 4, 05100 Terni, Italy.
Materials (Basel). 2017 Jul 16;10(7):809. doi: 10.3390/ma10070809.
Poly (lactic acid) (PLA) and poly (butylene succinate) (PBS) based films containing two different plasticizers [Acetyl Tributyl Citrate (ATBC) and isosorbide diester (ISE)] at three different contents (15 wt %, 20 wt % and 30 wt %) were produced by extrusion method. Thermal, morphological, mechanical and wettability behavior of produced materials was investigated as a function of plasticizer content. Filmature parameters were also adjusted and optimized for different formulations, in order to obtain similar thickness for different systems. Differential scanning calorimeter (DSC) results and evaluation of solubility parameter confirmed that similar miscibility was obtained for ATBC and ISE in PLA, while the two selected plasticizers resulted as not efficient for plasticization of PBS, to the limit that the PBS-30ATBC resulted as not processable. On the basis of these results, isosorbide-based plasticizer was considered a suitable agent for modification of a selected blend (PLA/PBS 80:20) and two mixing approaches were used to identify the role of ISE in the plasticization process: results from mechanical analysis confirmed that both produced PLA-PBS blends (PLA85-ISE15)-PBS20 and (PLA80-PBS20)-ISE15 could guarantee advantages in terms of deformability, with respect to the PLA80-PBS20 reference film, suggesting that the promising use of these stretchable PLA-PBS based films plasticized with isosorbide can provide novel solutions for food packaging applications.
采用挤出法制备了含有两种不同增塑剂[乙酰柠檬酸三丁酯(ATBC)和异山梨醇二酯(ISE)]、三种不同含量(15 wt%、20 wt%和30 wt%)的聚乳酸(PLA)和聚丁二酸丁二醇酯(PBS)基薄膜。研究了所制备材料的热性能、形态、力学和润湿性随增塑剂含量的变化。还针对不同配方调整和优化了成膜参数,以便不同体系获得相似的厚度。差示扫描量热仪(DSC)结果和溶解度参数评估证实,ATBC和ISE在PLA中具有相似的混溶性,而所选的两种增塑剂对PBS的增塑效果不佳,以至于PBS - 30ATBC无法加工。基于这些结果,异山梨醇基增塑剂被认为是一种适合用于改性所选共混物(PLA/PBS 80:20)的试剂,并采用两种混合方法来确定ISE在增塑过程中的作用:力学分析结果证实,与PLA80 - PBS20参考薄膜相比,所制备的两种PLA - PBS共混物(PLA85 - ISE15)- PBS20和(PLA80 - PBS20)- ISE15在可变形性方面均具有优势,这表明用异山梨醇增塑的这些可拉伸PLA - PBS基薄膜有望为食品包装应用提供新的解决方案。