Enzymatic Cellulose Palmitate Synthesis Using Immobilized Lipase
Author(s) -
Anna Roosdiana,
Diah Mardiana,
Ellya Indahyanti,
Dyah Ayu Oktavianie
Publication year - 2017
Publication title -
research journal of life science
Language(s) - English
Resource type - Journals
ISSN - 2355-9926
DOI - 10.21776/ub.rjls.2017.004.01.3
Subject(s) - palmitic acid , cellulose , chemistry , lipase , catalysis , crystallinity , candida antarctica , fourier transform infrared spectroscopy , nuclear chemistry , organic chemistry , chromatography , fatty acid , enzyme , chemical engineering , engineering , crystallography
Bacterial cellulose can be modified by esterification using palmitic acid and Mucor miehei lipase as catalyst. The purpose of this research was to determine the optimum conditions of esterification reaction of cellulose and palmitic acid . The esterification reaction was carried out at the time variation of 6, 12, 18, 24 and 30 hours and the mass ratio of cellulose: palmitic acid (1: 11: 2, 1: 3, 1: 4, 1: 5,1:6) at 50 °C. The cellulose palmitate was examined its physical and chemical properties by using FTIR spectrophotometer, XRD, bubble point test and saponification apparatus. The results showed that the optimum reaction time of esterification reaction of cellulose and palmitic acid occurred within 24 hours and the mass ratio of cellulose: palmitic acid was 1: 3 resulting in DS of 0.376 with swelling index of 187 %, crystallinity index of 61.95%, and Φ porous of 2.40 μm. Identification of functional groups using FTIR spectrophotometer showed that C=O ester group was observed at 1737.74 cm -1 and strengthened by the appearance of C-O ester peak at 1280 cm -1 . The conclusion of this study is reaction time and reactant ratio influence significantly the DS of cellulose ester.
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