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Synthesis of Nanofiber from Oil Palm Empty Fruit Bunches Cellulose Acetate for Bioplastics Production

机译:从油棕空果纤维束醋酸纤维素合成纳米纤维用于生物塑料生产

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The purposes of this research were to obtain nanometer-sized fiber with electrospinning method and to produce bioplastics with addition of diethylen glicol (DEG) plasticizer. This research was conducted through several stages, namely extraction of cellulose, synthesis of cellulose acetate, sythesis of nanofibers and production of bioplastics. In the production of nanofibers cellulose acetate, electrospinning method were used with concentrations of cellulose acetate (5, 10, and 15 %) and spinneret-collector distances (6, 8, and 10 cm) treatments. In the production of bioplastics, solution casting method was ??used with micro and nano fiber-sized cellulose acetate and addition of DEG plasticizer (0, 10, 20, and 30 %) treatments. The results of this research showed that the lowest nanofiber diameter of 134 nm was obtained on the cellulose acetate concentration of 10% and spinneret-collector distance of 8 cm. The best mechanical characteristic was obtained on bioplastic of nanofiber celulose acetate and the addition of plasticizer at the concentration of 10%. Its mechanical characteristics were tensile strength of 3.953 MPa and elongation of 18.56%.
机译:这项研究的目的是通过静电纺丝法获得纳米级的纤维,并通过添加二烯基乙二醇(DEG)增塑剂来生产生物塑料。这项研究经历了多个阶段,即纤维素的提取,醋酸纤维素的合成,纳米纤维的合成以及生物塑料的生产。在纳米纤维醋酸纤维素的生产中,采用静电纺丝法处理醋酸纤维素(浓度分别为5%,10%和15%)和喷丝板收集器距离(6、8和10 cm)。在生物塑料的生产中,溶液浇铸法是用微米和纳米纤维尺寸的醋酸纤维素并加入DEG增塑剂(0、10、20和30%)处理的。研究结果表明,在醋酸纤维素浓度为10%且喷丝板收集器距离为8 cm时,纳米纤维的最低直径为134 nm。纳米纤维醋酸纤维素的生物塑料和浓度为10%的增塑剂的加入均获得了最佳的机械性能。其机械特性为拉伸强度为3.953 MPa,伸长率为18.56%。

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