Effect of Addition Elephant Grass Cellulose and CaCO3 Oyster Shell Waste as Bioplastic Composites

Q3 Chemistry Molekul Pub Date : 2022-07-21 DOI:10.20884/1.jm.2022.17.2.6410
M. Aulia, Reza Rizki, S. Aprilia, F. Mulana
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引用次数: 1

Abstract

The effect of adding cellulose and CaCO3 as a bioplastic filler was studied. The source of cellulose is obtained from elephant grass plants, while CaCO3 is obtained from oyster shell waste. The primary raw material for bioplastics is tapioca starch with glycerol as a plasticizer using the solution casting method. The resulting bioplastics are thin and transparent but not very elastic, with a thickness is 1 mm. The mechanical properties test of bioplastics obtained tensile strength between 1-3 MPa and elongation between 1-4.4%. Physical properties test results obtained density between 0.313-0.33 g/mL and water absorption between 31.94-81.16%. The morphological test showed that the bioplastic surface was getting more uneven with more CaCO3 filler. The use of cellulose fillers without the combination obtained better results than cellulose and CaCO3 fillers.
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添加象草纤维素和CaCO3牡蛎壳废弃物作为生物塑料复合材料的效果
研究了添加纤维素和CaCO3作为生物塑料填料的效果。纤维素的来源是从象草植物中获得的,而CaCO3是从牡蛎壳废料中获得的。生物塑料的主要原料是木薯淀粉,采用溶液浇铸法将甘油作为增塑剂。所得的生物塑料是薄且透明的,但不是很有弹性,厚度为1mm。生物塑料的力学性能测试得到的拉伸强度在1-3MPa之间,伸长率在1-4.4%之间。物理性能测试结果得到的密度在0.313-0.33g/mL之间,吸水率在31.94-81.16%之间。形态测试表明,随着CaCO3填料的增加,生物塑料表面变得更加不均匀。使用没有组合的纤维素填料获得了比纤维素和CaCO3填料更好的结果。
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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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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