Optimization of cellulose extraction process from sugar beet pulp and preparation of its nanofibers with choline chloride–lactic acid deep eutectic solvents
Author:
Publisher
Springer Science and Business Media LLC
Subject
Renewable Energy, Sustainability and the Environment
Link
https://link.springer.com/content/pdf/10.1007/s13399-022-02885-4.pdf
Reference46 articles.
1. Álvarez A, Cachero S, González-Sánchez C, Montejo-Bernardo J, Pizarro C, Bueno JL (2018) Novel method for holocellulose analysis of non-woody biomass wastes. Carbohyd Polym 189:250–256
2. Bicu I, Mustata F (2011) Cellulose extraction from orange peel using sulfite digestion reagents. Biores Technol 102(21):10013–10019
3. Brinchi L, Cotana F, Fortunati E, Kenny J (2013) Production of nanocrystalline cellulose from lignocellulosic biomass: technology and applications. Carbohyd Polym 94(1):154–169
4. Chen H-M, Fu X, Luo Z-G (2015) Properties and extraction of pectin-enriched materials from sugar beet pulp by ultrasonic-assisted treatment combined with subcritical water. Food Chem 168:302–310
5. Dafchahi MN, Resalati H, Saraeyan AR, Ghasemian A, Shakeri AR (2018) Exploring the influence of initial liquor pH in the pre-hydrolysis stage on alpha-cellulose production from poplar. Cellulose 25(8):4783–4790
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