椰果为填料的可生物降解塑料降解研究

Tiara Nur Elfiana, A. Fitria, E. Sedyadi, S. Y. Prabawati, Irwan Nugraha
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引用次数: 4

摘要

淀粉是一种可生物降解的原料,可以被土壤中的细菌和微生物降解。淀粉含有纤维素,这是一种植物纤维素。以甘永美人蕉(Canna edulis Kerr)为纤维素源,添加椰粕作为填料,对塑料进行生物降解。用FITR法确定了可降解的塑料官能团。结果表明:甘永美人蕉(Canna edulis Kerr)可生物降解塑料的O-H基团位于波数3298.03 cm-1,加入可可椰后O-H基团移至波数3290.32 cm-1。美人蕉生物降解塑料和椰壳塑料的C-H键官能团波数分别为2920.01 cm-1和2916.16 cm-1。而在可生物降解淀粉塑料和椰果中,C-O键官能团的波数为995.05 cm-1。生物降解塑料的力学性能测试是基于ASTM方法的厚度、抗拉强度和伸长率。生物降解塑料的厚度约为0.1005 mm,抗拉强度为4,3244 MPa,伸长率约为13.9639%,WVTR约为14.20 g/m²h。结果表明,椰子树的塑料降解率每天增加5% ~ 38%。它比纯甘永美人蕉(美人蕉)淀粉制成的塑料更快。这些结果表明,在包装材料的生物降解塑料中添加可可脂可以获得更好的降解效果。
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Degradation Study of Biodegradable Plastic Using Nata De Coco as A Filler
Starch is known as a biodegradable raw material that can be degraded by bacteria and microorganisms in the soil. Starch has cellulose which is kind of plant cellulose. This study shows the biodegradation rates of plastic made from Ganyong Canna (Canna edulis Kerr) as a cellulose source which is added with nata de coco as a filler. The biodegradable plastic functional group was confirmed by using FITR. The results show that the O-H group of Ganyong Canna (Canna edulis Kerr) biodegradable plastic is located at wave number 3298.03 cm-1 and shifted to 3290.32 cm-1 after addition of nata de coco. The C-H bonds functional groups in Canna biodegradable plastics and nata de coco plastics are at wave numbers 2920.01 cm-1 and 2916.16 cm-1. While the C-O bonds functional groups in biodegradable starch plastics and nata de coco is shown at wave numbers 995.05 cm-1. The mechanical properties of biodegradable plastics testing are thickness, tensile strength, and elongation based on the ASTM method. The thickness is about 0.1005 mm, the tensile strength of biodegradable plastic is 4,3244 MPa and the elongation value range about 13.9639% while the WVTR range about 14.20 g/m² hours. The results show that the increase of the plastic degradation made from nata de coco occurs between 5% - 38% per days. It is faster than the plastic made from pure Ganyong Canna (Canna edulis Kerr) starch. These results indicate that nata de coco could be added in biodegradable plastic on packaging materials for better degradation.
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