会议论文详细信息
International Conference on Natural Products and Bioresource Science 2017
Preliminary study on biosynthesis and characterization of bacteria cellulose films from coconut water
生物科学;化学
Indrianingsih, A.W.^1 ; Rosyida, V.T.^1 ; Jatmiko, T.H.^1 ; Prasetyo, D.J.^1 ; Poeloengasih, C.D.^1 ; Apriyana, W.^1 ; Nisa, K.^1 ; Nurhayati, S.^1 ; Hernawan^1 ; Darsih, C.^1 ; Pratiwi, D.^1 ; Suwanto, A.^1 ; Ratih, D.^1
Research Unit for Natural Product Technology, Gading, Playen, Gunungkidul, Yogyakarta
55861, Indonesia^1
关键词: Acetobacter xylinum;    Bacteria cellulose;    Bacterial cellulose;    Carbon source;    Coconut water;    Cultivation time;    Incubation periods;    Optimum conditions;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/101/1/012010/pdf
DOI  :  10.1088/1755-1315/101/1/012010
学科分类:生物科学(综合)
来源: IOP
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【 摘 要 】
Bacterial cellulose produced by Acetobacter xylinum is a unique type of bacterial cellulose. It contains more than 90% of water. A preliminary study had shown that bacterial cellulose films has remarkable mechanical properties. The aim of this study was to investigate the optimum condition such as percentage of carbon source, time of cultivation, and pH to produce bacterial cellulose films from local coconut water, and its characterization on morphology, swelling ability and tensile strength of dried bacterial cellulose. A. xylinum was grown on coconut water culture medium with addition of 3%, 5%, and 7% of sugar, while the cultivation time was vary from 3 days, 5 days and 7 days. pH condition was conducted in pH 3, pH 5 and pH 7. Bacterial cellulose samples were dried using oven with temperature of 100°C until the moisture content reached 4-5%. This study showed that several parameters for optimum condition to produce bacterial cellulose films from local waste of coconut water had been obtained (5% of carbon source; pH 5; and 7 day of incubation period). The electron microscopy also showed that dried bacterial cellulose films had pores covered by fibrils on the surface. Therefore, the present work proposes the optimum formula and condition that can be used based on properties of end product needed.
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