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Influence of Starch Composition and Molecular Weight on Physicochemical Properties of Biodegradable Films

机译:淀粉组成和分子量对可生物降解膜理化性质的影响

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摘要

Thermoplastic starch (TPS) films are considered one of the most promising alternatives for replacing synthetic polymers in the packaging field due to the starch biodegradability, low cost, and abundant availability. However, starch granule composition, expressed in terms of amylose content and phosphate monoesters, and molecular weight of starch clearly affects some film properties. In this contribution, biodegradable TPS films made from potato, corn, wheat, and rice starch were prepared using the casting technique. The effect of the grain structure of each starch on microstructure, transparency, hydration properties, crystallinity, and mechanical properties of the films, was evaluated. Potato starch films were the most transparent and corn starch films the most opaque. All the films had homogeneous internal structures—highly amorphous and with no pores, both of which point to a good starch gelatinization process. The maximum tensile strength (4.48–8.14 MPa), elongation at break (35.41–100.34%), and Young’s modulus (116.42–294.98 MPa) of the TPS films were clearly influenced by the amylose content, molecular weight, and crystallinity of the film. In this respect, wheat and corn starch films, are the most resistant and least stretchable, while rice starch films are the most extensible but least resistant. These findings show that all the studied starches can be considered suitable for manufacturing resistant and flexible films with similar properties to those of synthetic low-density polyethylene (LDPE), by a simple and environmentally-friendly process.
机译:热塑性淀粉(TPS)薄膜由于具有淀粉的生物降解性,低成本和丰富的可用性,被认为是包装领域中替代合成聚合物的最有希望的替代品之一。然而,以直链淀粉含量和磷酸单酯表示的淀粉颗粒组成和淀粉的分子量明显影响某些膜的性能。在此贡献中,使用流延技术制备了由马铃薯,玉米,小麦和大米淀粉制成的可生物降解的TPS膜。评估了每种淀粉的晶粒结构对薄膜的微观结构,透明度,水合性能,结晶度和机械性能的影响。马铃薯淀粉膜最透明,玉米淀粉膜最不透明。所有薄膜均具有均匀的内部结构-高度无定形且无孔,这两者均表明淀粉具有良好的糊化过程。 TPS薄膜的直链淀粉含量,分子量和结晶度明显影响其最大拉伸强度(4.48–8.14 MPa),断裂伸长率(35.41–100.34%)和杨氏模量(116.42–294.98 MPa)。 。在这方面,小麦和玉米淀粉薄膜是最耐力和最不易拉伸的,而大米淀粉薄膜则是最可伸长但最不耐力的。这些发现表明,通过简单且环境友好的方法,所有研究的淀粉都可以被认为适合于制造具有与合成低密度聚乙烯(LDPE)相似的性能的抗性和柔性膜。

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