Nzimande Monwabisi Cyril, Mtibe Asanda, Tichapondwa Shepherd, John Maya Jacob
Centre for Nanostructures and Advanced Materials, Chemicals Cluster, CSIR, Pretoria 6011, South Africa.
Water Utilization and Environmental Engineering Division, Department of Chemical Engineering, University of Pretoria, Pretoria 0028, South Africa.
Polymers (Basel). 2024 Apr 16;16(8):1103. doi: 10.3390/polym16081103.
Polymeric materials undergo degradation when exposed to outdoor conditions due to the synergistic effects of sunlight, air, heat, and moisture. The degradation can lead to a decline in mechanical properties, fading, surface cracking, and haziness, attributed to the cleavage of the polymer chains and oxidation reactions. Accelerated weathering testing is a useful technique to evaluate the comparative photodegradation of materials within a reasonable timeframe. This review gives an overview of the different degradation mechanisms occurring in conventional plastics and bio-based materials. Case studies on accelerated weathering and its effect on the mechanical properties of conventional plastics and biocomposites are discussed. Different techniques for analysing volatile organic emissions (VOCs) have been summarized and studies highlighting the characterization of VOCs from aged plastics and biocomposites after aging have been cited.
由于阳光、空气、热和湿气的协同作用,聚合物材料在暴露于户外条件时会发生降解。这种降解会导致机械性能下降、褪色、表面开裂和模糊不清,这归因于聚合物链的断裂和氧化反应。加速老化试验是一种在合理时间范围内评估材料相对光降解的有用技术。本文综述了传统塑料和生物基材料中发生的不同降解机制。讨论了加速老化及其对传统塑料和生物复合材料机械性能影响的案例研究。总结了分析挥发性有机化合物(VOCs)的不同技术,并引用了突出老化后老化塑料和生物复合材料中VOCs特性的研究。