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Modeling of a multi-enzyme complex for the production of monosaccharides with a high degree of conversion

https://doi.org/10.15518/isjaee.2023.04.042-048

Abstract

In this paper, the use of grape cakes as raw materials in the production of bioethanol, an alternative type of fuel, is considered. At the same time, the effect of the use of a multi-enzyme complex in the process of enzymatic hydrolysis was studied. It should be noted that the problem of increasing the efficiency of bioethanol production is solved, on the one hand, by increasing the concentration of monosaccharides that accumulate during enzymatic hydrolysis. Increasing the efficiency of the enzymatic hydrolysis process is key in obtaining second-generation biofuel products. Therefore, the cellulose obtained as a result of primary processing was affected by various combinations of enzyme preparations consisting of a multi-enzyme complex. The daily growth in demand for fuel energy, as well as a decrease in the amount of petroleum products on earth, require the use of alternative sources of raw materials in the industry, indepth analysis of their composition and processing based on environmentally friendly technologies. This article explores the exclusivity of the technology for producing second-generation bioethanol from renewable sources.

About the Authors

Z. Z. Djamalov
Kazan (Privolzhsky) Federal University
Russian Federation

Djamalov Zokhid Zafarovich - Postgraduate student of the Department of Oil, Gas and Carbon Materials Technology of the Institute of Geology and Oil and Gas Technologies 

 st. Kremlin, 18, Kazan, Russia 



R. A. Kemalov
Kazan (Privolzhsky) Federal University
Russian Federation

Kemalov Ruslan Alimovich -  Ph.D., Associate Professor of the Department of Oil, Gas and Carbon Materials Technology at the Institute of Geology and Oil and Gas Technologies 

 st. Kremlin, 18, Kazan, Russia 



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Review

For citations:


Djamalov Z.Z., Kemalov R.A. Modeling of a multi-enzyme complex for the production of monosaccharides with a high degree of conversion. Alternative Energy and Ecology (ISJAEE). 2023;(4):42-48. (In Russ.) https://doi.org/10.15518/isjaee.2023.04.042-048

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ISSN 1608-8298 (Print)