ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ

Global economic development trends urgently require the transition of agricultural food production to industrial scale. Numerous patents recently obtained confirm that many countries are interested in protein production processes, particularly those based on hydrogen-oxidizing bacteria. Research int...

Повний опис

Збережено в:
Бібліографічні деталі
Дата:2026
Автори: Troshen'kin, B.A., Kravchenko, O.V., Troshen'kin, V.B.
Формат: Стаття
Мова:Українська
Опубліковано: Institute of Engineering Thermophysics of NAS of Ukraine 2026
Онлайн доступ:https://ihe.nas.gov.ua/index.php/journal/article/view/661
Теги: Додати тег
Немає тегів, Будьте першим, хто поставить тег для цього запису!
Назва журналу:Thermophysics and Thermal Power Engineering

Репозитарії

Thermophysics and Thermal Power Engineering
_version_ 1863039819962122240
author Troshen'kin, B.A.
Kravchenko, O.V.
Troshen'kin, V.B.
author_facet Troshen'kin, B.A.
Kravchenko, O.V.
Troshen'kin, V.B.
author_sort Troshen'kin, B.A.
baseUrl_str https://ihe.nas.gov.ua/index.php/journal/oai
collection OJS
datestamp_date 2026-04-20T07:34:21Z
description Global economic development trends urgently require the transition of agricultural food production to industrial scale. Numerous patents recently obtained confirm that many countries are interested in protein production processes, particularly those based on hydrogen-oxidizing bacteria. Research into this process is currently in the laboratory experimentation and preliminary design stages for pilot plants. This paper examines the current state of development in protein production using hydrogen-oxidizing bacteria. To identify deficiencies in the biomass cultivation process, a pilot plant was created and a series of studies were conducted. The results were compared with existing data. Based on the experimental results, the key principles of the biomass production process were clarified, and the reliability of individual components of the laboratory setup was verified. A comprehensive analysis of the resulting biomass, conducted in I. Mechnikov Institute of Microbiology and Immunology (Kharkiv, Ukraine) established that, during continuous cultivation, protein synthesis by the Alkaligenes eutropha Z1 bacterium is stable, accounting for 72-74 % of the resulting biomass, consistent with published data. The content of lipid, carbohydrate components, and nucleic acids is within normal limits. The presence of other species in the biomass does not exceed permissible levels. Thus, it has been proven that the individual components and the entire system operate reliably. Based on the results of experimental studies of the process, it was recommended to change the equipment design of the stand – to dissolve hydrogen in the cultural liquid before feeding it to the fermenter, and to use film devices as fermenters with stirrers. A calculation sequence for heat and mass transfer in a film fermenter was developed. It has been shown that the conversion of protein production from agricultural methods to industrial ones will yield significant economic benefits and improve the environment by reducing harmful emissions into the atmosphere.
doi_str_mv 10.31472/ttpe.1.2026.5
first_indexed 2026-04-17T01:00:15Z
format Article
id oai:ojs2.ihenasgovua.s43.yourdomain.com.ua:article-661
institution Thermophysics and Thermal Power Engineering
keywords_txt_mv keywords
language Ukrainian
last_indexed 2026-04-21T01:00:26Z
publishDate 2026
publisher Institute of Engineering Thermophysics of NAS of Ukraine
record_format ojs
spelling oai:ojs2.ihenasgovua.s43.yourdomain.com.ua:article-6612026-04-20T07:34:21Z HEAT AND MASS EXCHANGE IN PROTEIN PRODUCTION DEVICES BASED ON HYDROGEN OXIDIZING BACTERIA ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ Troshen'kin, B.A. Kravchenko, O.V. Troshen'kin, V.B. Global economic development trends urgently require the transition of agricultural food production to industrial scale. Numerous patents recently obtained confirm that many countries are interested in protein production processes, particularly those based on hydrogen-oxidizing bacteria. Research into this process is currently in the laboratory experimentation and preliminary design stages for pilot plants. This paper examines the current state of development in protein production using hydrogen-oxidizing bacteria. To identify deficiencies in the biomass cultivation process, a pilot plant was created and a series of studies were conducted. The results were compared with existing data. Based on the experimental results, the key principles of the biomass production process were clarified, and the reliability of individual components of the laboratory setup was verified. A comprehensive analysis of the resulting biomass, conducted in I. Mechnikov Institute of Microbiology and Immunology (Kharkiv, Ukraine) established that, during continuous cultivation, protein synthesis by the Alkaligenes eutropha Z1 bacterium is stable, accounting for 72-74 % of the resulting biomass, consistent with published data. The content of lipid, carbohydrate components, and nucleic acids is within normal limits. The presence of other species in the biomass does not exceed permissible levels. Thus, it has been proven that the individual components and the entire system operate reliably. Based on the results of experimental studies of the process, it was recommended to change the equipment design of the stand – to dissolve hydrogen in the cultural liquid before feeding it to the fermenter, and to use film devices as fermenters with stirrers. A calculation sequence for heat and mass transfer in a film fermenter was developed. It has been shown that the conversion of protein production from agricultural methods to industrial ones will yield significant economic benefits and improve the environment by reducing harmful emissions into the atmosphere. Розглянуто сучасний стан робіт з одержання білка на основі воденьокислюючих бактерій. Для виявлення недоліків апаратурного оформлення процесу вирощування біомаси створено експериментальну установку та проведено низку досліджень. Результати зіставлені за наявними даними. Рекомендовано замість ферментерів з мішалками застосовувати плівкові апарати. Складено послідовність розрахунку тепломасообміну в плівковому апараті. Наведено економічні та екологічні переваги промислового виробництва білка порівняно з сільськогосподарським. Institute of Engineering Thermophysics of NAS of Ukraine 2026-02-05 Article Article application/pdf https://ihe.nas.gov.ua/index.php/journal/article/view/661 10.31472/ttpe.1.2026.5 Thermophysics and Thermal Power Engineering; Vol 48 No 1 (2026): Thermophysics and Thermal Power Engineering; 47-55 Теплофизика и Теплоэнергетика; Vol 48 No 1 (2026): Thermophysics and Thermal Power Engineering; 47-55 Теплофізика та Теплоенергетика; Vol 48 No 1 (2026): Thermophysics and Thermal Power Engineering; 47-55 2663-7235 uk https://ihe.nas.gov.ua/index.php/journal/article/view/661/577
spellingShingle Troshen'kin, B.A.
Kravchenko, O.V.
Troshen'kin, V.B.
ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title_alt HEAT AND MASS EXCHANGE IN PROTEIN PRODUCTION DEVICES BASED ON HYDROGEN OXIDIZING BACTERIA
title_full ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title_fullStr ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title_full_unstemmed ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title_short ТЕПЛО- ТА МАСООБМІН В АПАРАТАХ ОТРИМАННЯ БІЛКА НА ОСНОВІ ВОДЕНЬОКИСЛЮЮЧИХ БАКТЕРІЙ
title_sort тепло- та масообмін в апаратах отримання білка на основі воденьокислюючих бактерій
url https://ihe.nas.gov.ua/index.php/journal/article/view/661
work_keys_str_mv AT troshenkinba heatandmassexchangeinproteinproductiondevicesbasedonhydrogenoxidizingbacteria
AT kravchenkoov heatandmassexchangeinproteinproductiondevicesbasedonhydrogenoxidizingbacteria
AT troshenkinvb heatandmassexchangeinproteinproductiondevicesbasedonhydrogenoxidizingbacteria
AT troshenkinba teplotamasoobmínvaparatahotrimannâbílkanaosnovívodenʹokislûûčihbakteríj
AT kravchenkoov teplotamasoobmínvaparatahotrimannâbílkanaosnovívodenʹokislûûčihbakteríj
AT troshenkinvb teplotamasoobmínvaparatahotrimannâbílkanaosnovívodenʹokislûûčihbakteríj