The Potential of Nanocellulose Acetate as Surfactant for Water-Vegetable Oil Systems

Ikhsan Ibrahim, M. Ledyastuti
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引用次数: 0

Abstract

Indonesia, as an agricultural country, has a variety of abundant plants. Cellulose is a component in plants that can be modified to increase its economic value. Resizing cellulose to nanocellulose and modification of nanocellulose to nanocellulose acetate can increase its potential as a surfactant. Resizing cellulose can be done using the strong acid hydrolysis method. An acetic anhydride reagent was utilized to convert the surface hydroxyl functional group into acetyl. The successful production and modification of nanocellulose were confirmed using fourier transform infrared and particle size analysis characterization. The infrared absorption spectrum of cellulose and nanocellulose showed no difference in peaks. Particle size distribution showed that nanocellulose I (CNC I) and nanocellulose II (CNC II) has sizes of 142 nm and 319 nm, respectively. The property of nanocellulose molecules in an oil-water system was simulated using molecular dynamics with GROMACS 2020.6 software. Appropriate trends can be seen in the interfacial tension of water-vegetable oil systems. The value of interfacial tension decreases with the addition of nanocellulose acetate compared to the addition of nanocellulose. With the agreement between the experimental and computational results, nanocellulose acetate can act as a surfactant.
纳米醋酸纤维素作为水-植物油体系表面活性剂的潜力
印度尼西亚是一个农业国家,植物种类丰富。纤维素是植物中的一种成分,可以通过改性来增加其经济价值。将纤维素重新上浆为纳米纤维素和将纳米纤维素改性为纳米醋酸纤维素可以增加其作为表面活性剂的潜力。用强酸水解法可使纤维素重新上浆。用乙酸酐试剂将表面羟基官能团转化为乙酰基。利用傅里叶红外变换和粒度分析表征证实了纳米纤维素的成功制备和改性。纤维素和纳米纤维素的红外吸收光谱峰没有差异。粒径分布表明,纳米纤维素I (CNC I)和纳米纤维素II (CNC II)的粒径分别为142 nm和319 nm。采用分子动力学软件GROMACS 2020.6模拟了纳米纤维素分子在油水体系中的性质。水-植物油体系的界面张力有相应的变化趋势。界面张力值随着纳米醋酸纤维素的加入而降低。实验结果与计算结果一致,表明纳米醋酸纤维素可以作为表面活性剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
15
审稿时长
24 weeks
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