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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Plasticized starch-based biocomposites containing modified rice straw fillers with thermoplastic, thermoset-like and thermoset chemical structures
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Plasticized starch-based biocomposites containing modified rice straw fillers with thermoplastic, thermoset-like and thermoset chemical structures

机译:含有含有改性稻草填料的塑化的淀粉基生物复合材料,具有热塑性,热固性和热固性化学结构

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摘要

In this work, rice straw (RS) as an abundant biomass was applied to prepare some renewable thermoplastic materials by using soda-pulping and benzylation processes. The obtained RS products including untreated RS, RS pulp, benzylated RS pulp and pulping liquor as well as benzylated RS were incorporated into the thermoplastic starch through a twin-screw extrusion process to obtain all green composites. The successful thermoplasticization reaction of RS products was confirmed by spectroscopy results and morphological observations. The interfacial adhesion between the plasticized starch matrix and the RS products is enhanced by the chemical modifications, which confirmed by investigating through the morphological observations and linear rheological responses. The partial phase miscibility of the plasticizer/starch mixtures is improved by adding the benzylated RS and RS pulp. The RS pulp having cellulosic microfibers enhances the Young modulus and tensile strength of the plasticized starch even more than untreated RS. However, their thermoset and thermoset-like structure leads to the brittle failure mode of the starch biocomposites, similar to the common natural fiber biocomposites.The thermoplasticization reaction changes the failure mode and significantly improves the toughness of the plasticized starch/RS product biocomposites owing to better phase miscibility. (C) 2019 Published by Elsevier B.V.
机译:在这项工作中,稻草(RS)作为一种充实的生物质,通过使用苏打制浆和苄基化方法制备一些可再生的热塑性材料。通过双螺杆挤出方法将所得RS,RS纸浆,苄基化的RS纸浆和制浆液以及苄基化的RS掺入热塑性淀粉中,以获得所有绿色复合材料。通过光谱结果和形态学观察证实了RS产物的成功热塑性化反应。通过通过形态学观察和线性流变反应来研究塑化的淀粉基质和RS产物之间的互补粘附性。通过加入苄基化的RS和RS纸浆来改善增塑剂/淀粉混合物的部分相位混合物。具有纤维素微纤维的RS纸浆增强了塑化淀粉的杨氏模量和拉伸强度,甚至比未经处理的Rs。然而,它们的热固性和热固性的结构导致淀粉生物复合材料的脆性破坏模式,类似于普通的天然纤维生物复合材料。热塑性化反应改变失效模式,并显着提高了增塑淀粉/ RS产品生物复合材料的韧性更好的相似性。 (c)2019年由elestvier b.v发布。

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