Cellulose Microfibrils Filler Contributes to Thermal Stability and Morphology of Bioplastics from Sorghum-Based

Y. Darni, N. Hanifah, H. Utami, L. Lismeri, M. Hanif
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Abstract

This research aimed to examine the effect of cellulose microfibrils (CMF) as a filler to thermal characteristics and morphology of bioplastic. Sorghum starch and chitosan, of which 63 micron particle size, were varied by starch to chitosan ratio (g/g) of 10:0; 9.5:0.5; 8.5:1.5; 7.5:2.5; 6,5:3.5; and 5.5:4.5 respectively. About 1 gr (10% on a weight basis) of glycerol, as a plasticizer, was appended to the mixture. The addition of CMF was done to the mixture, and its concentration was varied 0, 1, 2, and 3% (w/w). The combination of 8.5 g sorghum starch and 1.5 g chitosan gave the best results. It revealed the enhance of the thermal characteristic of bioplastic due to the increase of the filler — this phenomenon expressed by glass transition, crystallinity, and melting temperature of bioplastic. The SEM analysis on the morphology structure of the bioplastic surface showed that the addition of the filler will contribute to dense of bioplastic structure.
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纤维素微原纤维填料对高粱基生物塑料的热稳定性和形态的影响
本研究旨在研究纤维素微原纤维(CMF)作为填料对生物塑料热特性和形态的影响。高粱淀粉和壳聚糖的粒径为63微米,淀粉与壳聚糖的比例(g/g)为10:0;9.5:0.5;8.5:1.5;7.5:2.5;6, 5:3.5;和5.5:4.5。在混合物中加入约1克(按重量计算为10%)的甘油作为增塑剂。在混合物中加入CMF,其浓度分别为0、1、2和3% (w/w)。以8.5 g高粱淀粉和1.5 g壳聚糖的组合效果最佳。揭示了生物塑料的热特性由于填料的增加而增强,这种现象表现为生物塑料的玻璃化转变、结晶度和熔融温度。对生物塑料表面形貌结构的SEM分析表明,填料的加入有助于生物塑料结构的致密化。
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