Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Репозиторий Евразийского национального университета имени Л.Н. Гумилева
Просмотр элемента 
  •   Главная
  • Научные статьи
  • 01. Публикации в изданиях зарубежных стран
  • Engineering
  • Просмотр элемента
  •   Главная
  • Научные статьи
  • 01. Публикации в изданиях зарубежных стран
  • Engineering
  • Просмотр элемента
JavaScript is disabled for your browser. Some features of this site may not work without it.

Comparative Study of the NOx, CO Emissions, and Stabilization Characteristics of H2-Enriched Liquefied Petroleum Gas in a Swirl Burner

Thumbnail
Автор
Dostiyarov, Abay Mukhamediyarovich
Umyshev, Dias Raybekovich
Aidymbayeva, Zhanar Abdeshevna
Yamanbekova, Ayaulym Konusbekovna
Duisenbek, Zhansaya Serikkyzy
Kumargazina, Madina Bakytzhanovna
Kartjanov, Nurlan Rezhepbayevich
Begimbetova, Ainur Serikbayevna
Дата
2024
Редактор
Energies
ISSN
1996-1073
xmlui.dri2xhtml.METS-1.0.item-identifier-citation
Dostiyarov, A.M.; Umyshev, D.R.; Aidymbayeva, Z.A.; Yamanbekova, A.K.; Duisenbek, Z.S.; Kumargazina, M.B.; Kartjanov, N.R.; Begimbetova, A.S. Comparative Study of the NOx, CO Emissions, and Stabilization Characteristics of H2-Enriched Liquefied Petroleum Gas in a Swirl Burner. Energies 2024, 17, 6132. https://doi.org/10.3390/ en17236132
Аннотации
The global shift toward renewable fuels and the reduction in anthropogenic environmental impact have become increasingly critical. However, the current challenges in fully transitioning to environmentally friendly fuels necessitate the use of transitional fuel mixtures. While many alternatives have been explored, the combination of hydrogen and LPG appears to be the most practical under the conditions specific to Kazakhstan. This study presents experimental findings on a novel burner system that utilizes the airflow swirl and hydrogen enrichment of LPG. It evaluates the effects of hydrogen addition, fuel supply methods, and swirl intensity—achieved by adjusting the outlet vanes—on flame stabilization as well as NOx and CO emissions. The results show that the minimum NOx concentration achieved was 12.08 ppm, while the minimum CO concentration was 101 ppm. Flame stabilization studies indicate that supplying the fuel at the center of the burner, rather than at the base, improves stabilization by 23%. Additionally, increasing the proportion of hydrogen positively affects stabilization. However, the analysis also reveals that, as the hydrogen content in the fuel rises, NOx concentrations increase. These findings highlight the importance of balancing the hydrogen enrichment, airflow swirl, and fuel supply methods to achieve optimal combustion performance. While hydrogen-enriched LPG offers enhanced flame stabilization, the associated rise in NOx emissions presents a challenge that requires careful management to maintain both efficiency and environmental compliance.
URI
http://repository.enu.kz/handle/enu/30030
Открыть
Comparative Study of the NOx, CO Emissions, and Stabilization.pdf (3.537Mb)
Collections
  • Engineering[651]
Показать полную информацию
CORE Recommender

Евразийский национальный университет имени Л.Н. Гумилева | Научная библиотека | Контакты
YM
Научная библиотека | Контакты
 

Просмотр

Весь DSpaceСообщества и коллекцииДата публикацииАвторыНазванияТематикаЭта коллекцияДата публикацииАвторыНазванияТематика

Моя учетная запись

ВойтиРегистрация

Евразийский национальный университет имени Л.Н. Гумилева | Научная библиотека | Контакты
YM
Научная библиотека | Контакты