Effect of Chitosan, Clay, and CMC on Physicochemical Properties of Bioplastic from Banana Corm with Glycerol.

A. Sugiharto, Adilla Syarifa, Nindita Handayani, R. Mahendra
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引用次数: 1

Abstract

Bioplactic from banana corm and glycerol has been studied in this research. In addition, the physical chemical properties of it has been improved by adding chitosan, clay and CMC as filler and glycerol as plasticizer. Plastic that produced form organic material such as starch usually has poor properties in physical and mechanical. Composition variation of chitosan, clay and CMC as filler then combined by variation of glycerol as plasticizer have produced significant improve of the bioplastic physical properties. Properties of the bioplastic that studied in this research was focused to biodegradation, elongation, and tensile strength. The addition of fillers and plasticizers is carried out to produce a better bioplastics. This study used 3 variations of the filler composition : 4, 5, and 6 grams and 2 variations of the plasticizer composition: 1 ml and 2 ml. The bioplastics that produced were tested for tensile strength, elongation, and biodegradation of the soil for 7 days. The best tensile strength results is 8.43 MPa for bioplastic that using CMC fillers. On the other side, the best elongation percentage is 9.87% for bioplastic which using CMC fillers. The bioplastic that added Clay as filler can be degraded up to 100% in 7 days.
壳聚糖、粘土和CMC对甘油三酯香蕉生物塑料理化性能的影响。
以香蕉叶和甘油为原料,研究了生物塑料的制备方法。此外,以壳聚糖、粘土和CMC为填料,甘油为增塑剂,改善了其理化性能。由淀粉等有机材料制成的塑料通常具有较差的物理和机械性能。改变壳聚糖、粘土和CMC作为填料的组成,再加上改变甘油作为增塑剂,生物塑料的物理性能得到了显著改善。本研究主要研究了生物塑料的生物降解、伸长率和抗拉强度。通过添加填料和增塑剂来生产更好的生物塑料。本研究使用了3种填料成分:4克、5克和6克,以及2种增塑剂成分:1毫升和2毫升。对生产的生物塑料进行了7天的抗拉强度、伸长率和土壤的生物降解测试。使用CMC填料的生物塑料拉伸强度达到8.43 MPa。另一方面,使用CMC填料的生物塑料的最佳伸长率为9.87%。添加粘土作为填料的生物塑料在7天内降解率可达100%。
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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