The Optimization of Additional of Glycerol on the Biodegradable Foam from Corn Husk

Syefrin Syahadatia Gani, H. Kusumayanti
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引用次数: 1

Abstract

Biodegradable foam is one of the packaging food friendly nature the environment. In process, biodegradable foam is still have low water absorpstion and low tensile strength. Biofoam made from raw starch and fiber have low tensile strength. Addition plasticizer material of glycerol can increase tensile strength on the biofoam. This research uses the baking process method. Based on research, biofoam with addition glycerol can affect the physical and mechanical characteristics of the biofoam produced. The optimum conditions for biofoam present in concentration 7% glycerol with value of the tensile strength 0.42 Mpa and value of power absorb water 35.07% and bidegradibility value in is 27.76% in 14 days. Glycerol can increase elasticity, because capable in reduce bond internal hydrogen so can decrease distance intermolecular, so that can increase value of the thensile strength. Variation condition operation influential on visuals and textures the resulting biofoam with optimum conditions 135℃ for 50 minutes. Temperature gelatinization starch sago 73 – 79℃. On this research, using variation temperature 115℃ and 135℃. And analysis result morphology show biofoam with high temperature have a high water absoprtion because if already pass temperature gelatinization starch so starch will form a paste and dissolve in water.
玉米壳可生物降解泡沫中甘油添加量的优化
可生物降解泡沫是一种对环境友好的食品包装材料。在此过程中,生物可降解泡沫仍然具有低吸水率和低抗拉强度的特点。由生淀粉和纤维制成的生物泡沫具有较低的抗拉强度。在生物泡沫上添加增塑剂甘油可以提高生物泡沫的抗拉强度。本研究采用烘焙法。通过研究,在生物泡沫中添加甘油会对所制生物泡沫的物理力学特性产生影响。制备生物泡沫的最佳工艺条件为:甘油浓度为7%,抗拉强度为0.42 Mpa,吸水率为35.07%,降解率为27.76%。甘油能增加弹性,因为能在减少氢键内部所以能减少分子间的距离,从而能提高拉伸强度值。变化条件操作对所得生物泡沫的视觉和质地有影响,最佳条件为135℃50分钟。西米淀粉糊化温度73 - 79℃。本研究采用115℃和135℃变温。形貌分析结果表明,高温生物泡沫具有较高的吸水性,因为高温生物泡沫已使淀粉糊化,使淀粉形成糊状并溶于水。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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