Scale-Up Preparation of Biobased Poly(ethylene furanoate) Biaxial Orientation Films with Enhanced Mechanical and Barrier Properties for Packaging

材料科学 乙烯 食品包装 化学工程 复合材料 高分子科学 纳米技术 有机化学 化学 催化作用 食品科学 工程类
作者
Bo Wang,Zihan Jia,Lingming Meng,Wuri Zhang,Lin Sang,Wentao Chan,Yu Zhang,Lei Wang,Min Qi,Zhiyong Wei
出处
期刊:ACS Sustainable Chemistry & Engineering [American Chemical Society]
卷期号:12 (44): 16409-16422 被引量:9
标识
DOI:10.1021/acssuschemeng.4c06817
摘要

Poly(ethylene furanoate) (PEF) films, recognized for their promising barrier and mechanical properties, offer a sustainable alternative to conventional petrochemical-based poly(ethylene terephthalate) (PET). In this study, the effects of biaxial orientation parameters on the properties of biaxially oriented PEF (BOPEF) and PET/PEF/PET multilayer coextrusion films were comprehensively investigated to explore the potential of PEF for high-barrier packaging materials. Optimized conditions for BOPEF films were achieved at a stretch ratio of 3.5, a temperature of 105 °C, and a rate of 100%/s, which enhanced the tensile strength to 145 MPa, the modulus of elasticity to 4.1 GPa, and the elongation at break to 88%. Moreover, these films exhibited superior barrier properties with an oxygen permeability of 0.0083 barrer, a carbon dioxide permeability of 0.0031 barrer, and a water vapor permeability of 5.54 × 10–15 g·cm/(cm2·s·Pa). Under the same conditions, the mechanical properties and barrier properties of PET/PEF/PET films were further improved by adding 20% PEF to PET/PEF/PET films. The barrier properties of oxygen, carbon dioxide, and water vapor were improved by 32%, 50%, and 74%, respectively. The pilot-scale production validated the laboratory findings, demonstrating stability in film performance and consistent barrier properties, thus confirming the feasibility of industrial-scale production for applications in packaging. The findings from this study not only underscore the potential of PEF as a high-performance material in packaging applications but also illustrate the critical importance of process optimization in achieving the desired material properties. These results build a solid foundation for the broader industrial application of PEF, enhancing its viability as a scalable and environmentally friendly alternative in the packaging industry.
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