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Thermoplastic starch composites reinforced by agricultural by-products: properties, biodegradability, andapplication

机译:农业副产品增强的热塑性淀粉复合材料:性能,生物降解性和应用

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This article focuses on the development of starch-based biodegradable polymer composites reinforced by agricultural byproducts. Maize hull and sugarcane bagasse were used as reinforcements in maize starch, which was plasticized by glycerol and maltitol. Compounds with different compositions were produced by compounding in a twin screw extruder The mechanical (tensile-, three point bending-, and Charpy-impact) properties and shrinkage were determined on injection-molded specimens and compared with those of commercial HDPE. The mechanical properties of thermoplastic starch increased with the addition of both maze hull and sugarcane bagasse, but only the latter ensured comparable results with reference HDPE. This was traced to differences in the interfacial adhesion between filler and matrix as observed by scanning electron microscopy. Distance spacers for pizza boxes, usually made from HDPE, were injection molded from these biodegradable composites and subjected biodegradation in soil. The related results indicated that this biodegradable spacer is a good and environmentally benign alternative for the HDPE counterpart.
机译:本文重点研究由农业副产品增强的淀粉基生物可降解聚合物复合材料的开发。玉米壳和甘蔗渣用作玉米淀粉的增强剂,玉米淀粉通过甘油和麦芽糖醇增塑。通过在双螺杆挤出机中混合制备具有不同组成的化合物。在注塑样品上测定机械(拉伸,三点弯曲和夏比冲击)性能和收缩率,并将其与商用HDPE进行比较。热塑性淀粉的机械性能随迷宫皮和甘蔗渣的加入而增加,但只有后者才能确保与参考HDPE相当的结果。可以追溯到通过扫描电子显微镜观察到的填料与基体之间的界面粘附性差异。通常由HDPE制成的比萨盒的间隔垫片是由这些可生物降解的复合材料注塑而成的,并在土壤中进行了生物降解。相关结果表明,这种可生物降解的间隔物是HDPE对应物的良好且对环境无害的替代品。

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