Moldovan Andrei, Cuc Stanca, Prodan Doina, Rusu Mircea, Popa Dorin, Taut Adrian Catalin, Petean Ioan, Bomboş Dorin, Doukeh Rami, Nemes Ovidiu
Department Environmental Engineering and Sustainable Development Entrepreneurship, Technical University of Cluj-Napoca, 400641 Cluj-Napoca, Romania.
"Raluca Ripan" Institute of Research in Chemistry, "Babes Bolyai" University, 400294 Cluj-Napoca, Romania.
Polymers (Basel). 2023 Jun 28;15(13):2855. doi: 10.3390/polym15132855.
The present study is focused on polylactic acid (PLA) blending with bio nanoadditives, such as Tonsil (clay) and Aerosil, to obtain nanocomposites for a new generation of food packaging. The basic composition was enhanced using Sorbitan oleate (E494) and Proviplast as plasticizers, increasing the composite samples' stability and their mechanical strength. Four mixtures were prepared: S1 with Tonsil; S2 with Aerosil; S3 with Aerosil + Proviplast; and S4 with Sabosorb. They were complexly characterized by FT-IR spectroscopy, differential scanning calorimetry, mechanical tests on different temperatures, and absorption of the saline solution. FTIR shows a proper embedding of the filler component into the polymer matrix and DSC presents a good stability at the living body temperature for all prepared samples. Micro and nanostructural aspects were evidenced by SEM and AFM microscopy, revealing that S3 has the most compact and uniform filler distribution and S4 has the most irregular one. Thus, S3 evidenced the best diametral tensile strength and S4 evidenced the weakest values. All samples present the best bending strength at 18 °C and fair values at 4 °C, with the best values being obtained for the S1 sample and the worst for S4. The lack of mechanical strength of the S4 sample is compensated by its best resistance at liquid penetration, while S1 is more affected by the liquid infiltrations. Finally, results show that PLA composites are suitable for biodegradable and disposable food packages, and the desired properties could be achieved by proper adjustment of the filler proportions.
本研究聚焦于聚乳酸(PLA)与生物纳米添加剂(如高岭土(粘土)和气相二氧化硅)共混,以获得用于新一代食品包装的纳米复合材料。使用失水山梨醇油酸酯(E494)和普罗维塑料作为增塑剂增强了基本成分,提高了复合样品的稳定性及其机械强度。制备了四种混合物:S1含高岭土;S2含气相二氧化硅;S3含气相二氧化硅+普罗维塑料;S4含萨博索尔。通过傅里叶变换红外光谱、差示扫描量热法、不同温度下的力学测试以及盐溶液吸收对它们进行了综合表征。傅里叶变换红外光谱显示填料成分能很好地嵌入聚合物基体,差示扫描量热法表明所有制备的样品在体温下具有良好的稳定性。通过扫描电子显微镜和原子力显微镜观察到微观和纳米结构方面的情况,结果表明S3具有最致密且均匀的填料分布,S4的分布最不规则。因此,S3表现出最佳抗径拉伸强度,S4表现出最弱的值。所有样品在18℃时呈现最佳弯曲强度,在4℃时呈现中等值,其中S1样品的值最佳,S4最差。S4样品机械强度的不足由其最佳的抗液体渗透性能弥补,而S1受液体渗透的影响更大。最后,结果表明聚乳酸复合材料适用于可生物降解和一次性食品包装,通过适当调整填料比例可以实现所需性能。