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Effect of Glycerol Concentration on Mechanical Characteristics of Biodegradable Plastic from Rice Straw Cellulose

机译:甘油浓度对稻草纤维素生物降解塑料力学特性的影响

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Biodegradable plastic or bioplastic as eco-friendly polymers are used for replacement of commercial plastics in the market due to its biodegradability and non-pollutant properties. Bioplastics give many advantages for food packaging and medical purposes. Bioplastics can be manufactured from natural fiber as the main source. One of the main potentials of natural fibers in Indonesia is rice straw. The aims of this research were to manufacture bioplastics and to study their physical and mechanical characteristics. Bioplastics were made by mixing rice straw pulp as main cellulose source with plasticizer and chitosan as additives. Glycerol as a plasticizer was added with the variation of glycerol concentrations of 25%, 30%, and 35%. The test done on the bioplastics were molecular structure analysis using Fourier-transform Infrared Spectroscopy (FTIR), water swelling test, oil swelling test, tensile strength test using Universal Testing Machine, and soil-based biodegradation test. Results showed that best bioplastics (bioplastic with 35% glycerol) in this study contains functional groups of N-H (3393.9 cm~(-1)), O-H (3391cm~(-1)), C-H (2938.68 cm~(-1)), C-O (1111.05 cm~(-1)), C-N (1230.64 cm~(-1)). It resulted 86.866% in water swelling test, 29.109% in oil swelling test, 6 MPa in tensile strength test, and it broke at 65% elongation. During biodegradation test for 15 days under dry soil and wet soil, the weight of the bioplastic reduced 18.496% and 21.317%, respectively.
机译:由于其生物降解性和非污染物特性,可生物化的塑料或生物塑料或生物塑料塑料可用于更换市场的商业塑料。生物塑料对食品包装和医疗的目的具有许多优点。生物塑料可以用天然纤维制成作为主要来源。印度尼西亚天然纤维的主要潜力之一是稻草。该研究的目的是制造生物塑料并研究其物理和机械特性。通过将稻草纸浆作为主要纤维素源与增塑剂和壳聚糖作为添加剂来制造生物塑料。加入甘油作为增塑剂,加入甘油浓度为25%,30%和35%的变化。使用傅立叶变换红外光谱(FTIR),水溶液试验,油溶解试验,使用通用试验机的抗拉强度试验以及基于土壤的生物降解试验的研究进行了分子结构分析。结果表明,该研究中最佳的生物塑料(生物塑料含有35%甘油)含有NH的官能团(3393.9cm〜(-1)),OH(3391cm〜(-1)),CH(2938.68cm〜(-1)) ,CO(1111.05cm〜(-1)),CN(1230.64cm〜(-1))。它在水膨胀试验中导致86.866%,油溶解试验29.109%,拉伸强度试验6MPa,伸长率为65%。在干土壤和湿土下的生物降解试验期间,生物塑料重量分别减少18.496%和21.317%。

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