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BIODEGRADABLE FILMS OF CASSAVA STARCH, PULLULAN AND BACTERIAL CELLULOSE

机译:木薯淀粉,PULLULAN和细菌纤维素的生物可降解膜

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The largest consumption of plastics in the world is referred to the synthetic polymers, which are not biodegradable and have a non-renewable source, generating a large environmental impact, especially in urban centers. As a result, in the last two decades several polymers obtained from renewable sources (biopolymers) have been studied as potential raw materials for the production of new biodegradable materials with different applications. The objectives of this study were to produce biodegradable films based on cassava starch, pullulan and bacterial cellulose, and also to characterize these films according to their microstructure, barrier, thermal and mechanical properties. The addition of bacterial cellulose and pullulan to the starch films resulted in films with more homogeneous surfaces, and also decreased solubility and water vapor permeability, and increased elongation and thermal stability.
机译:世界上最大的塑料消费量是指合成聚合物,这些合成聚合物不可生物降解,并且来源不可再生,会对环境造成巨大影响,尤其是在城市中心。结果,在过去的二十年中,已经研究了几种从可再生资源中获得的聚合物(生物聚合物),作为生产具有不同用途的新型可生物降解材料的潜在原材料。这项研究的目的是生产基于木薯淀粉,支链淀粉和细菌纤维素的可生物降解薄膜,并根据其微结构,阻隔性,热和机械性能表征这些薄膜。向淀粉膜中添加细菌纤维素和支链淀粉使膜具有更均匀的表面,并且溶解度和水蒸气渗透性降低,并且伸长率和热稳定性提高。

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