Luzi Francesca, Torre Luigi, Kenny José Maria, Puglia Debora
Civil and Environmental Engineering Department, University of Perugia, UdR INSTM, Strada di Pentima 4, 05100 Terni, Italy.
Materials (Basel). 2019 Feb 3;12(3):471. doi: 10.3390/ma12030471.
In the present review, the possibilities for blending of commodities and bio-based and/or biodegradable polymers for packaging purposes has been considered, limiting the analysis to this class of materials without considering blends where both components have a bio-based composition or origin. The production of blends with synthetic polymeric materials is among the strategies to modulate the main characteristics of biodegradable polymeric materials, altering disintegrability rates and decreasing the final cost of different products. Special emphasis has been given to blends functional behavior in the frame of packaging application (compostability, gas/water/light barrier properties, migration, antioxidant performance). In addition, to better analyze the presence of nanosized ingredients on the overall behavior of a nanocomposite system composed of synthetic polymers, combined with biodegradable and/or bio-based plastics, the nature and effect of the inclusion of bio-based nanofillers has been investigated.
在本综述中,考虑了用于包装目的的商品与生物基和/或可生物降解聚合物共混的可能性,分析仅限于此类材料,未考虑两种组分均具有生物基组成或来源的共混物。与合成聚合物材料制备共混物是调节可生物降解聚合物材料主要特性、改变崩解速率以及降低不同产品最终成本的策略之一。特别强调了共混物在包装应用框架内的功能行为(可堆肥性、气体/水/光阻隔性能、迁移、抗氧化性能)。此外,为了更好地分析纳米级成分对由合成聚合物与可生物降解和/或生物基塑料组成的纳米复合体系整体行为的影响,研究了生物基纳米填料加入的性质和效果。