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The addition of sugarcane bagasse and asparagus peel enhances the properties of sweet potato starch foams

机译:甘蔗渣和芦笋皮的加入增强了甘薯淀粉泡沫的性能

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摘要

The agro-industrial wastes, sugarcane bagasse (SB) and asparagus peel (AP), were used to enhance the properties of biodegradable foam trays based on sweet potato starch-based foam trays (starch/SB and starch/AP trays, respectively). Starch/SB and starch/AP trays containing different concentrations of SB and AP (0%-40%, w/w) were prepared, and their microstructure and physical, thermal, and mechanical properties were characterized. The addition of fibers wastes allowed obtaining a yellowish foam tray with lower luminosity and higher porosity, mechanical resistance, deformability, and better ability to absorb water as compared with the sweet potato starch foam trays without fibers. The addition of SB yielded foam trays less porous, with lower water absorption capacity and greater tensile strength than the addition of AP. Higher concentrations of AP fibers (greater than 30%) generate more extendible foam trays. The addition of fibrous wastes improved the thermal stability of the sweet potato starch foam trays. The composite foam trays produced in this work could be used as substitutes for expanded polystyrene in dry food packaging.
机译:农业工业废料,甘蔗渣(SB)和芦笋皮(AP)用于增强基于甘薯淀粉的泡沫托盘(分别为淀粉/ SB和淀粉/ AP托盘)的可生物降解泡沫托盘的性能。制备了含有不同浓度的SB和AP(0%-40%,w / w)的淀粉/ SB和淀粉/ AP托盘,并表征了它们的微观结构以及物理,热和机械性能。与没有纤维的甘薯淀粉泡沫托盘相比,纤维废物的添加允许获得具有较低发光度和较高孔隙率,机械抗性,可变形性和更好的吸水能力的淡黄色泡沫托盘。与添加AP相比,添加SB可使泡沫塑料托盘的孔少,吸水能力低和抗张强度更高。较高浓度的AP纤维(大于30%)会生成更多可扩展的泡沫盘。纤维废料的添加改善了甘薯淀粉泡沫托盘的热稳定性。在这项工作中生产的复合泡沫托盘可以用作干食品包装中膨胀聚苯乙烯的替代品。

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