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Compatibilization in bio-based and biodegradable polymer blends

机译:生物基和可生物降解的聚合物共混物的相容性

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The production and use of biopolymers increases continuously with a very high rate thus all information on these materials is very important. This feature article first defines the terms used in the area then discusses the distinction between degradation and biodegradation as well as their importance for practice. Biopolymers often have inferior properties compared to commodity polymers. Modification is a way to improve properties and achieve property combinations required for specific applications. One technique is blending which allows considerable improvement in the impact resistance of brittle polymers. However, further study is needed on the miscibility-structure-property relationships of these materials to utilize all potentials of the approach. The chemical structure of biopolymers opens up possibilities to their reactive modification. Copolymerization, grafting, trans-esterification, the use of reactive coupling agents have all been utilized with success to achieve polymers and blends with improved properties. Several examples are shown for the various approaches and their outcome. Biopolymers and their blends are applied successfully in several areas from agriculture to consumer goods, packaging and automotive.
机译:生物聚合物的生产和使用以非常高的速度持续增长,因此有关这些材料的所有信息都非常重要。这篇专题文章首先定义了该领域中使用的术语,然后讨论了降解与生物降解之间的区别及其在实践中的重要性。与商品聚合物相比,生物聚合物的性能通常较差。修改是一种改进属性并实现特定应用所需的属性组合的方法。一种技术是共混,它可以大大改善脆性聚合物的抗冲击性。但是,需要进一步研究这些材料的混溶性-结构-性质关系,以利用该方法的所有潜力。生物聚合物的化学结构为它们的反应改性开辟了可能性。共聚,接枝,酯基转移,反应性偶联剂的使用均已成功地用于获得具有改进性能的聚合物和共混物。给出了各种方法及其结果的几个示例。生物聚合物及其混合物已成功应用于农业,消费品,包装和汽车等多个领域。

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