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多元醇增塑-淀粉增强微晶纤维素的加工与性能表征。

Processing and characterization of polyols plasticized-starch reinforced with microcrystalline cellulose.

机构信息

Grupo de Polímeros, Departamento de Física, Universidade da Coruña, Escuela Universitaria Politécnica, Campus de Ferrol, Avda. 19 de Febrero s/n, 15405 Ferrol, Spain.

Centro de Investigación de Polímeros Avanzados (CIPA), Edificio Laboratorio CIPA, Av. Collao 1202, Concepción, Chile.

出版信息

Carbohydr Polym. 2016 Sep 20;149:83-93. doi: 10.1016/j.carbpol.2016.04.087. Epub 2016 Apr 23.

Abstract

Biocomposites suitable for short-life applications such as food packaging were prepared by melt processing and investigated. Biocomposites studied are wheat starch plasticized with two different molecular weight polyols (glycerol and sorbitol) and reinforced with various amounts of microcrystalline cellulose. The effect of the plasticizer type and the filler amount on the processing properties, the crystallization behavior and morphology developed for the materials, and the influence on thermal stability, dynamic mechanical properties and water absorption behavior were investigated. Addition of microcrystalline cellulose led to composites with good filler-matrix adhesion where the stiffness and resistance to humidity absorption were improved. The use of sorbitol as a plasticizer of starch also improved the stiffness and water uptake behavior of the material as well as its thermal stability. Biodegradable starch-based materials with a wide variety of properties can be tailored by varying the polyol plasticizer type and/or by adding microcrystalline cellulose filler.

摘要

研究了通过熔融加工制备的适用于短寿命应用(如食品包装)的生物复合材料。研究的生物复合材料是用两种不同分子量的多元醇(甘油和山梨糖醇)增塑的小麦淀粉,并添加了不同量的微晶纤维素。考察了增塑剂类型和填充剂用量对材料的加工性能、结晶行为和形态的影响,以及对热稳定性、动态力学性能和吸水性的影响。添加微晶纤维素导致复合材料具有良好的填料-基体附着力,从而提高了刚性和抗吸湿性。使用山梨糖醇作为淀粉的增塑剂也改善了材料的刚性和吸水性行为以及其热稳定性。通过改变多元醇增塑剂类型和/或添加微晶纤维素填充剂,可以对具有广泛性能的可生物降解淀粉基材料进行定制。

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