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首页> 外文期刊>Packaging Technology and Science >PLLA-ZIF-8 metal organic framework composites for potential use in food applications: Production, characterization and migration studies
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PLLA-ZIF-8 metal organic framework composites for potential use in food applications: Production, characterization and migration studies

机译:PLLA-ZIF-8金属有机框架复合材料,用于食品应用中的潜在用途:生产,表征和迁移研究

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PLLA-15% ZIF-8 MOF composites were fabricated by melt compounding followed by injection molding for active packaging applications. The injection-molded discs were then converted into films by compression molding. The samples were morphological and thermally characterized. Migration studies using Atomic Absorption Spectrometry were conducted on the successful produced PLLA and PLLA-15% MOF films incubated at 40 degrees C for 240 h with two simulants, Simulant A: aqueous and acidic foods with 10% ethanol, and Simulant B: low and high alcoholic foods with 50% ethanol as per the U.S. Food and Drug Administration guidelines for packaging application testing. After 240 h Zn2+ ion concentrations in Simulants A and B were 354 and 166 mg L-1, respectively. Higher Zn2+ ion migration observed in Simulant A can be ascribed to the decomposition of the ZIF-8 MOF under acidic environment. Thermo-gravimetric studies indicated that the thermal stability of PLLA dropped from 338 degrees C to 207 degrees C with the addition of ZIF-8 MOF, which may be credited to the catalytic depolymerization effect of the MOF. Due to high migration, the studied composite films are not suitable for direct food contact applications in their present form. Future work must be directed to explore how to engineer these composites for food contact applications.
机译:通过熔融配混制造PLLA-15%ZIF-8 MOF复合材料,然后通过注射成型用于主动包装应用。然后通过压缩成型将注塑盘转化为薄膜。样品是形态和热表征。使用原子吸收光谱法的迁移研究在成功的PLLA和PLLA-15%MOF膜上进行240小时,用两个模拟剂孵育240小时,模拟剂A:含有10%乙醇的水性和酸性食物,模拟B:低含有50%乙醇的高酒精食品,根据美国食品和药物管理指南进行包装应用测试。在模拟剂A和B中的240小时Zn2 +离子浓度分别为354和166mg L-1。在模拟A中观察到的较高的Zn2 +离子迁移可以归因于酸性环境下ZIF-8MOF的分解。热重量研究表明,通过添加ZIF-8MOF,PLLA的热稳定性从338℃掉落到207℃,这可以归还MOF的催化解聚作用。由于高迁移,所研究的复合薄膜不适合于目前形式的直接食品接触应用。必须指示未来的工作探索如何为食物联系人应用创造这些复合材料。

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