Mastalygina Elena, Varyan Ivetta, Kolesnikova Natalya, Gonzalez Maria Isabel Cabrera, Popov Anatoly
Scientific Laboratory "Advanced Composite Materials and Technologies", Plekhanov Russian University of Economics, 36 Stremyanny per., 117997 Moscow, Russia.
Department of Biological and Chemical Physics of Polymers, Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, 4 Kosygina str., 119334 Moscow, Russia.
Polymers (Basel). 2020 Feb 13;12(2):437. doi: 10.3390/polym12020437.
Compounding natural additives with synthetic polymers allows developing more eco-friendly materials with enhanced biodegradability. The composite films based on low-density polyethylene (PE) with different content of natural rubber (NR) (10-30 wt%) were investigated. The influence of NR content on structural features, water absorption and mechanical properties of the composites were studied. The 70PE/30NR composite is characterized by the uniform distribution and the smallest size of NR domains (45 ± 5 μm). A tensile test was satisfied by the mechanical properties of the biocomposites, caused by elasticity of NR domains. The tensile strength of 70PE/30NR composite film is 5 ± 0.25 MPa. Higher water absorption of PE/NR composites (1.5-3.7 wt%) compared to neat PE facilitates penetrating vital activity products of microorganisms. Mycological test with mold fungi and full-scale soil test detected the composite with 30 wt% of NR as the most biodegradable (mass loss was 7.2 wt% for 90 days). According to infrared spectroscopy and differential scanning calorimetry analysis, NR consumption and PE structural changes in the biocomposites after exposure to soil occurred. The PE/NR composites with enhanced biodegradability as well as satisfied mechanical and technological properties have potential applications in packaging and agricultural films.
将天然添加剂与合成聚合物复合,可以开发出具有更高生物降解性的更环保材料。对基于低密度聚乙烯(PE)并含有不同含量天然橡胶(NR)(10 - 30 wt%)的复合薄膜进行了研究。研究了NR含量对复合材料结构特征、吸水性和力学性能的影响。70PE/30NR复合材料的特点是NR域分布均匀且尺寸最小(45±5μm)。生物复合材料的力学性能通过拉伸试验得到满足,这是由NR域的弹性引起的。70PE/30NR复合薄膜的拉伸强度为5±0.25MPa。与纯PE相比,PE/NR复合材料具有更高的吸水性(1.5 - 3.7 wt%),这有利于微生物生命活动产物的渗透。用霉菌进行的真菌学试验和全尺寸土壤试验检测到含30 wt%NR的复合材料生物降解性最强(90天质量损失为7.2 wt%)。根据红外光谱和差示扫描量热法分析,生物复合材料在暴露于土壤后发生了NR消耗和PE结构变化。具有增强生物降解性以及良好力学和工艺性能的PE/NR复合材料在包装和农用薄膜方面具有潜在应用。