BIOSYNTHESIS OF BACTERIAL CELLULOSE BY МEDUSOMYCES GISEVII
https://doi.org/10.20914/2310-1202-2015-3-149-156
Abstract
About the Authors
E. K. GladyshevaRussian Federation
Graduate, Laboratory of bioconversion. phone (3854) 30-14-15
E. A. Skiba
Russian Federation
associate professor, Laboratory of bioconversion. phone (3854) 30-14-15
References
1. Belgacem M.N., Gandini A.Monomers, Polymers and Composites from Renewable Resources. Amsterdam, Elsevier, 2008. 553 p.
2. Gladysheva E.K. Justification of the choice of a nutrient medium to synthesize bacterial cellulose. Vestnik Altaiskoi nauki. [Bulletin of Altai science], 2014, no. 1, pp. 307-310. (In Russ).
3. Koon-Yang Lee, Gizem Buldum, Anthanasios Mantalaris at al. More than Meets the Eye in Bacterial Cellulose: Boisynthesis, Bioprocessing, and Applications in Advanced Fiber Composites. Macromolecular Bioscience, 2014, no 6, pp. 10-32.
4. Kutyshenko V.P., Yurkevich D.I. Medusomyces (Tea fungus): scientific history, composition, physiology, and metabolism. Biofizika. [Biophysics], 2002, no 6, pp. 1116-1129. (In Russ.).
5. Goh W.N., Rosma A., Kaur B. at al. Fermentation of black tea broth (Kombucha): I. Effects of sucrose concentration and fermentation time on the yield of microbial cellulose. International Food Research Journal, 2012, no. 19(1), pp. 109-117.
6. Masaoka S., Ohe T., Sakota N. Production of cellulose from glucose by Acetobacter xylinum. Journal of Fermentation and Bioengineering, 1993, no. 75 (1), pp. 18-22.
7. Zhumabekova B.K., Zhumabekova K.A. Technology for producing of the kombucha tea with the addition of oregano extract. Fundamental'nye issledovaniya. [Fundamental research], 2015. no. 2 (11). pp. 2370-2373. (In Russ).
8. Obolenskaya A.V., El'nitskaya Z.P., Leonovich A.A. Laboratornye raboty po khimii drevesiny i tsellyulozy: uchebnoe posobie dlya vuzov. [Laboratory work on the chemistry of wood and cellulose: textbook for universities.]. Moscow, Ekologiya, 1991. 320 p. (In Russ).
9. Xueqiong Yin, Changjiang Yu, Xiaoli Zhang at al. Comparison of succinylation methods for bacterial cellulose and adsorption capacities of bacterial cellulose derivatives for Cu2+ ion. Polymer Bulletin, 2011, no. 67, pp. 401-412.
10. Gismatulina Yu.A., Budaeva V.V. Ftir spectroscopic comparison of miscanthus celluloses with cotton celluloses. Polzunovskii vestnik [Polzunov Bulletin], 2014, no. 3, pp. 177-181. (In Russ).
Review
For citations:
Gladysheva E.K., Skiba E.A. BIOSYNTHESIS OF BACTERIAL CELLULOSE BY МEDUSOMYCES GISEVII. Proceedings of the Voronezh State University of Engineering Technologies. 2015;(3):149-156. (In Russ.) https://doi.org/10.20914/2310-1202-2015-3-149-156