• English
    • Latviešu
    • Deutsch
    • русский
  • Help
  • русский 
    • English
    • Latviešu
    • Deutsch
    • русский
  • Войти
Просмотр элемента 
  •   Главная
  • B6 – LU institūti un aģentūras / Institutes and agencies of the UL
  • Cietvielu fizikas institūts / Institute of Solid State Physics
  • Zinātniskie raksti (CFI) / Scientific articles
  • Просмотр элемента
  •   Главная
  • B6 – LU institūti un aģentūras / Institutes and agencies of the UL
  • Cietvielu fizikas institūts / Institute of Solid State Physics
  • Zinātniskie raksti (CFI) / Scientific articles
  • Просмотр элемента
JavaScript is disabled for your browser. Some features of this site may not work without it.

Metal–Organic Frameworks (MOFs) Containing Adsorbents for Carbon Capture

Thumbnail
Открыть
MetalOrganic_Frameworks_AnsoneBertina_etal_Energies_2022.pdf (6.515Mb)
Автор
Ansone-Bertina, Linda
Ozols, Viesturs
Arbidans, Lauris
Dobkevica, Linda
Sarsuns, Kristaps
Vanags, Edgars
Klavins, Maris
Дата
2022
Metadata
Показать полную информацию
Аннотации
In this study, new composite materials of montmorillonite, biochar, or aerosil, containing metal–organic frameworks (MOF) were synthesized in situ. Overall, three different MOFs—CuBTC, UTSA‐16, and UiO‐66‐BTEC—were used. Obtained adsorbents were characterized using powder X‐ray diffraction, thermogravimetric analysis, nitrogen adsorption porosimetry, scanning electron microscopy, energy‐dispersive X‐ray spectroscopy, and Fourier transform infrared spectrophotometry. Additionally, the content of metallic and nonmetallic elements was determined to investigate the crystalline structure, surface morphology, thermal stability of the obtained MOF‐composites, etc. Cyclic CO2 adsorption analysis was performed using the thermogravimetric approach, modeling adsorption from flue gasses. In our study, the addition of aerosil to CuBTC (CuBTC‐A‐15) enhanced the sorbed CO2 amount by 90.2% and the addition of biochar (CuBTC‐BC‐5) increased adsorbed the CO2 amount by 75.5% in comparison to pristine CuBTC obtained in this study. Moreover, the addition of montmorillonite (CuBTC‐Mt‐15) increased the adsorbed amount of CO2 by 27%. CuBTC‐A‐15 and CuBTC‐BC‐5 are considered to be the most perspective adsorbents, capturing 3.7 mmol/g CO2 and showing good stability after 20 adsorption‐desorption cycles. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
URI
https://www.mdpi.com/1996-1073/15/9/3473
https://dspace.lu.lv/dspace/handle/7/61094
DOI
10.3390/en15093473
Collections
  • Zinātniskie raksti (CFI) / Scientific articles [604]

University of Latvia
Контакты | Отправить отзыв
Theme by 
@mire NV
 

 

Просмотр

Весь DSpaceСообщества и коллекцииДата публикацииАвторыНазванияТематикаЭта коллекцияДата публикацииАвторыНазванияТематика

Моя учетная запись

Войти

Статистика

Просмотр статистики использования

University of Latvia
Контакты | Отправить отзыв
Theme by 
@mire NV