Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Nadezhda A. Shavyrkina"'
Autor:
Yulia A. Gismatulina, Vera V. Budaeva, Aleksey N. Kortusov, Ekaterina I. Kashcheyeva, Evgenia K. Gladysheva, Galina F. Mironova, Ekaterina A. Skiba, Nadezhda A. Shavyrkina, Anna A. Korchagina, Vladimir N. Zolotukhin, Gennady V. Sakovich
Publikováno v:
Plants, Vol 11, Iss 20, p 2791 (2022)
Lignocellulosic biomass is of great interest as an alternative energy resource because it offers a range of merits. Miscanthus × giganteus is a lignocellulosic feedstock of special interest, as it combines a high biomass productivity with a low envi
Externí odkaz:
https://doaj.org/article/34813cadc6b34335b06598ec348cca88
Autor:
N. V. Bychin, G. F. Mironova, V. V. Budaeva, Yu. A. Gismatulina, Nadezhda A Shavyrkina, Yu. V. Sevastyanova, Evgenia K. Gladysheva, Anastasia E. Sitnikova
Publikováno v:
Proceedings of Universities. Applied Chemistry and Biotechnology. 11:460-471
Scaling biosynthesis of bacterial nanocellulose (BNC) allowed samples of composite paper with an increased proportion of BNC to be obtained. This work aims to study BNC samples and bleached soft wood kraft pulp (BSKP) composite paper with a ratio of
Autor:
Ekaterina I. Kashcheyeva, Yulia A. Gismatulina, Galina F. Mironova, Evgenia K. Gladysheva, Vera V. Budaeva, Ekaterina A. Skiba, Vladimir N. Zolotuhin, Nadezhda A. Shavyrkina, Aleksey N. Kortusov, Anna A. Korchagina
Publikováno v:
Polymers; Volume 14; Issue 18; Pages: 3899
The present paper is a fundamental study on the physicochemical properties and hydrolysis behavior of cellulose samples differing in origin: bacterial, synthetic, and vegetal. Bacterial cellulose was produced by Medusomyces gisevii Sa-12 in an enzyma
Autor:
Yu. A. Gismatulina, Igor N. Pavlov, V. V. Budaeva, Gennady V. Sakovich, Nadezhda A Shavyrkina, D. S. Golubev, Е. Gladysheva, Е. Kashcheyeva, А. Korchagina, G. F. Mironova
Publikováno v:
BIOTECHNOLOGY: STATE OF THE ART AND PERSPECTIVES. :290-292
A technology has been developed for the synthesis of bacterial nanocellulose from oat hulls and Miscanthus. The Мedusomyces gisevii Sa-12 microbial producer was found to synthesize bacterial nanocellulose of high quality, regardless of the feedstock
Autor:
Evgenia K. Gladysheva, Andrey N. Zharikov, Vladimir G. Lubyansky, Gennady V. Sakovich, Anna A. Korchagina, Anastasia E. Sitnikova, Elena N. Semyonova, Igor N. Pavlov, Nikolay V. Bychin, Nadezhda A Shavyrkina, V. V. Budaeva, E. A. Skiba
Publikováno v:
Polymers
Volume 13
Issue 13
Polymers, Vol 13, Iss 2118, p 2118 (2021)
Volume 13
Issue 13
Polymers, Vol 13, Iss 2118, p 2118 (2021)
Extended cultivation with multiple removal of BC pellicles is proposed herein as a new biosynthetic process for bacterial cellulose (BC). This method enhances the BC surface area by 5–11 times per unit volume of the growth medium, improving the eco
Autor:
Anastasia E. Sitnikova, Aleksei I Shilov, Yulia A. Gismatulina, Pavel S Kuznetsov, G. F. Mironova, V. V. Budaeva, Nikolay V. Bychin, Nadezhda A Shavyrkina, E. A. Skiba, Gennady V. Sakovich, Ekaterina I. Kashcheyeva
Publikováno v:
Polymers
Volume 13
Issue 12
Polymers, Vol 13, Iss 1920, p 1920 (2021)
Volume 13
Issue 12
Polymers, Vol 13, Iss 1920, p 1920 (2021)
Bacterial nanocellulose (BNC) is a unique product of microbiological synthesis, having a lot of applications among which the most important is biomedicine. Objective complexities in scaling up the biosynthesis of BNC are associated with the nature of
Autor:
Nadezhda A. Shavyrkina, Ekaterina A. Skiba, Anastasia E. Kazantseva, Evgenia K. Gladysheva, Vera V. Budaeva, Nikolay V. Bychin, Yulia A. Gismatulina, Ekaterina I. Kashcheyeva, Galina F. Mironova, Anna A. Korchagina, Igor N. Pavlov, Gennady V. Sakovich
Publikováno v:
Polymers; Volume 13; Issue 23; Pages: 4241
Polymers
Polymers, Vol 13, Iss 4241, p 4241 (2021)
Polymers
Polymers, Vol 13, Iss 4241, p 4241 (2021)
One of the ways to enhance the yield of bacterial cellulose (BC) is by using dynamic aeration and different-type bioreactors because the microbial producers are strict aerobes. But in this case, the BC quality tends to worsen. Here we have combined s
Autor:
Gennady V. Sakovich, G. F. Mironova, Е. Gladysheva, Anastasia E. Sitnikova, Е. Kashcheyeva, P. Kuznetsov, D. S. Golubev, Yu. A. Gismatulina, A. Shilov, А. Korchagina, Nadezhda A Shavyrkina, Igor N. Pavlov, Е. Skiba
Publikováno v:
BIOTECHNOLOGY: STATE OF THE ART AND PERSPECTIVES. :272-273
The extended cultivation with metabolite extraction and the cyclic cultivation of bacterial nanocellulose (BNC) have, for the first time, been examined herein. The biosynthesis of BNC has been scaled up in a 440-L vessel, which is currently the large
Autor:
Anna A. Korchagina, Igor N. Pavlov, Yulia A. Gismatulina, V. V. Budaeva, G. F. Mironova, E. A. Skiba, Evgenia K. Gladysheva, Nadezhda A Shavyrkina, Gennady V. Sakovich, Ekaterina I. Kashcheyeva, Nikolay V. Bychin, Dmitry S Golubev, O. V. Baibakova
Publikováno v:
Nanomaterials
Volume 9
Issue 12
Volume 9
Issue 12
Bacterial nanocellulose (BNC) whose biosynthesis fully conforms to green chemistry principles arouses much interest of specialists in technical chemistry and materials science because of its specific properties, such as nanostructure, purity, thermal
Autor:
Victor A. Nesterov, Roman N. Golykh, Andrey V. Shalunov, Vladimir N. Khmelev, Roman S. Dorovskikh, Nadezhda A. Shavyrkina
Publikováno v:
2016 17th International Conference of Young Specialists on Micro/Nanotechnologies and Electron Devices (EDM).
The article considers the approach to the realization low-temperature spray drying of sour milk products, which is based on the application of ultrasonic action for atomization of raw material and also at the interaction of drops generated by the ato