首页> 外文期刊>Journal of Polymers and the Environment >Reinforcement of Soy Protein-Based Bioplastics Through Addition of Lignocellulose and Injection Molding Processing Conditions
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Reinforcement of Soy Protein-Based Bioplastics Through Addition of Lignocellulose and Injection Molding Processing Conditions

机译:通过添加木质纤维素和注塑工艺条件增强基于大豆蛋白的生物塑料

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摘要

Bioplastics have gained great interest in recent years as a potential alternative to conventional plastics, since they are renewable and biodegradable materials. However, their mechanical properties are not able to match those of conventional plastics yet. In this context, the incorporation of additives to improve those properties of bioplastics is an interesting line of research. The aim of this work was to develop soy protein-based bioplastics with lignocellulosic fiber (additive) by injection molding. Mechanical and absorption properties of bioplastics reinforced with lignocellulose (0.1, 1.0, 5.0 wt%) have been studied, as well as their microstructure. Furthermore, a study of the effect produced by changing the mold temperature (70, 90, 110, 130 degrees C) was carried out. The results obtained confirm an improvement of the mechanical properties of these bioplastics, depending on the amount of fiber incorporated. In any case, these findings support the role of cellulosic compounds as additives in protein bioplastics.
机译:近年来,由于生物塑料是可再生和可生物降解的材料,因此作为常规塑料的潜在替代品已经引起了极大的兴趣。但是,它们的机械性能尚不能与常规塑料相匹敌。在这种情况下,掺入添加剂以改善生物塑料的那些特性是有趣的研究领域。这项工作的目的是通过注塑成型开发具有木质纤维素纤维(添加剂)的大豆蛋白基生物塑料。研究了木质纤维素(0.1、1.0、5.0 wt%)增强的生物塑料的机械性能和吸收性能,以及它们的微观结构。此外,对通过改变模具温度(70、90、110、130摄氏度)产生的效果进行了研究。所获得的结果证实了这些生物塑料的机械性能的改善,这取决于所掺入的纤维的量。无论如何,这些发现支持了纤维素化合物在蛋白质生物塑料中作为添加剂的作用。

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