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Characterization of natural polymers as functional barriers for cellulose-based packaging materials

机译:天然聚合物的表征作为纤维素的包装材料的功能屏障

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摘要

Cellulose-based packaging materials are currently the most commonly used food packaging materials due to their light weight, stability and affordable price. However, the use of recycled paper and board adds to the risk that undesirable substances migrate into the packed goods, since contaminants are not completely removed during the recycling process and can accumulate in the final product. The only available fast and practical solution that can be used to reduce the migration of these substances is the application of functional barriers in the packaging. The applied barriers are currently mostly synthetic, which either serve only a moderate barrier function and/or have the disadvantage that it is often more complex and expensive to recycle the resulting packaging material. The aim of this project is to evaluate different bio-based or biodegradable polymers with regards to their barrier properties. Due to the fact that the transport phenomena are mainly driven by (gas phase) migration, methods based on gas chromatography (GC), including GC coupled with mass spectrometry (GC-MS) and flame ionization detection (GC-FID), GC-FID coupled online with high pressure liquid chromatography (HPLC-GC-FID), and comprehensive GCxGC-MS were used to qualify and quantify the migrated substances. This use of a wide range of different methods and instruments yielded excellent results, allowing us to comprehensively characterize the biopolymers and their barrier function.
机译:纤维素的包装材料目前是最常用的食品包装材料,因为它们的重量轻,稳定性和价格实惠。然而,使用再生纸和纸板增加了不希望的物质迁移到包装物品中的风险,因为在回收过程中没有完全除去污染物,并且可以在最终产品中积累。唯一可用于减少这些物质迁移的可用快速实用的解决方案是在包装中的应用。所施加的屏障目前主要是合成的,其仅用于中等屏障功能和/或具有缺点,即它通常更复杂并且再循环所得到的包装材料。该项目的目的是评估不同的生物基或可生物降解的聚合物,以其对其阻隔性能。由于运输现象主要由(气相)迁移驱动,基于气相色谱(GC)的方法,包括GC与质谱(GC-MS)和火焰电离检测(GC-FID),GC-耦合FID耦合在线,高压液相色谱(HPLC-GC-FID),并综合的GCXGC-MS用于资格化和量化迁移的物质。这种使用各种不同的方法和仪器产生了优异的结果,使我们能够全面地表征生物聚合物及其屏障功能。

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