Technology and implementation of fermentative units for bioprotein production from natural gas

Objectives. To conduct a comparative analysis of the features of a fermentation unit design for obtaining bioprotein from natural gas and determine the main technical and structural solutions used in the development of fermentation apparatus, which vary according to the method of organizing hydrauli...

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Main Authors: V. M. Kochetkov, I. S. Gaganov, V. V. Kochetkov, P. A. Nyunkov
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2023-08-01
Series:Тонкие химические технологии
Subjects:
Online Access:https://www.finechem-mirea.ru/jour/article/view/1972
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author V. M. Kochetkov
I. S. Gaganov
V. V. Kochetkov
P. A. Nyunkov
author_facet V. M. Kochetkov
I. S. Gaganov
V. V. Kochetkov
P. A. Nyunkov
author_sort V. M. Kochetkov
collection DOAJ
description Objectives. To conduct a comparative analysis of the features of a fermentation unit design for obtaining bioprotein from natural gas and determine the main technical and structural solutions used in the development of fermentation apparatus, which vary according to the method of organizing hydraulic and mass transfer processes.Results. An analysis of publications devoted to the problem of developing technological equipment for conducting the process of obtaining a bioprotein from natural gas is presented. Using the comparative analysis, the key features of bioreactors and their internal elements are indicated according to the method of organizing the hydrodynamic regime. The main approaches to the technological development of fermentation units for obtaining bioprotein from natural gas are described and technical solutions used in the implementation of these structures are identified.Conclusions. Fermenter designs for the cultivation of methane-oxidizing microorganisms vary according to the main approaches for implementing the hydraulic regime inside the apparatus. While one class of fermentation systems is based on the principle of volumetric mixing in the working space of the apparatus, with the possibility of including external circulation circuits, additional tanks, and auxiliary bioreactors in the system, the other main class relies on the principle of flow (displacement) in the tube space with subsequent release of the gas phase from the circulating culture liquid.
format Article
id doaj-art-d581baf2df1f43caaf61193b24d14516
institution Kabale University
issn 2410-6593
2686-7575
language Russian
publishDate 2023-08-01
publisher MIREA - Russian Technological University
record_format Article
series Тонкие химические технологии
spelling doaj-art-d581baf2df1f43caaf61193b24d145162025-08-20T03:42:45ZrusMIREA - Russian Technological UniversityТонкие химические технологии2410-65932686-75752023-08-0118323024210.32362/2410-6593-2023-18-3-230-2421718Technology and implementation of fermentative units for bioprotein production from natural gasV. M. Kochetkov0I. S. Gaganov1V. V. Kochetkov2P. A. Nyunkov3GIPROBIOSINTEZGIPROBIOSINTEZGIPROBIOSINTEZGIPROBIOSINTEZObjectives. To conduct a comparative analysis of the features of a fermentation unit design for obtaining bioprotein from natural gas and determine the main technical and structural solutions used in the development of fermentation apparatus, which vary according to the method of organizing hydraulic and mass transfer processes.Results. An analysis of publications devoted to the problem of developing technological equipment for conducting the process of obtaining a bioprotein from natural gas is presented. Using the comparative analysis, the key features of bioreactors and their internal elements are indicated according to the method of organizing the hydrodynamic regime. The main approaches to the technological development of fermentation units for obtaining bioprotein from natural gas are described and technical solutions used in the implementation of these structures are identified.Conclusions. Fermenter designs for the cultivation of methane-oxidizing microorganisms vary according to the main approaches for implementing the hydraulic regime inside the apparatus. While one class of fermentation systems is based on the principle of volumetric mixing in the working space of the apparatus, with the possibility of including external circulation circuits, additional tanks, and auxiliary bioreactors in the system, the other main class relies on the principle of flow (displacement) in the tube space with subsequent release of the gas phase from the circulating culture liquid.https://www.finechem-mirea.ru/jour/article/view/1972bioreactorfermenterfermentationbiomassproteinflowsheetmethanotrophsmethylococcus capsulatus
spellingShingle V. M. Kochetkov
I. S. Gaganov
V. V. Kochetkov
P. A. Nyunkov
Technology and implementation of fermentative units for bioprotein production from natural gas
Тонкие химические технологии
bioreactor
fermenter
fermentation
biomass
protein
flowsheet
methanotrophs
methylococcus capsulatus
title Technology and implementation of fermentative units for bioprotein production from natural gas
title_full Technology and implementation of fermentative units for bioprotein production from natural gas
title_fullStr Technology and implementation of fermentative units for bioprotein production from natural gas
title_full_unstemmed Technology and implementation of fermentative units for bioprotein production from natural gas
title_short Technology and implementation of fermentative units for bioprotein production from natural gas
title_sort technology and implementation of fermentative units for bioprotein production from natural gas
topic bioreactor
fermenter
fermentation
biomass
protein
flowsheet
methanotrophs
methylococcus capsulatus
url https://www.finechem-mirea.ru/jour/article/view/1972
work_keys_str_mv AT vmkochetkov technologyandimplementationoffermentativeunitsforbioproteinproductionfromnaturalgas
AT isgaganov technologyandimplementationoffermentativeunitsforbioproteinproductionfromnaturalgas
AT vvkochetkov technologyandimplementationoffermentativeunitsforbioproteinproductionfromnaturalgas
AT panyunkov technologyandimplementationoffermentativeunitsforbioproteinproductionfromnaturalgas