Sodium cation exchanged zeolites for direct air capture of CO2

  • Kim, Do Yeong; 
  • Bae, Wo Bin; 
  • Min, Haehyun; 
  • Ryu, Kyeong-Hun; 
  • Kweon, Sungjoon; 
  • ... Kim, Young Jin; 
  • 외 3명
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초록

Direct air capture technology requires investigating materials that can capture carbon dioxide inexpensively and efficiently, considering their performance under real atmospheric conditions. This study systematically investigated the CO2 adsorption-desorption performance of the representative zeolites (ZSM-5, Beta, Mordenite and Y) in H- and Na-forms using various analytical methods, including in-situ Diffuse Reflectance Infrared Fourier Transform spectroscopy. Compared to the corresponding H-zeolites, the enhancement of CO2 adsorption capacity by Na+ ions was observed for all the structure-type zeolite adsorbents. The Na-ZSM-5 showed excellent performance in the direct air capture of CO2 (DAC) due to its relatively smaller pore size and stronger acid-basic properties. The effective adsorption capacity of Na-ZSM-5 was pronounced at lower Si/Al ratios, making it the most efficient low-concentration CO2 adsorbent. The low silica Na-ZSM-5 exhibited a durable adsorptiondesorption capacity after multiple cycles, indicating its practical reusability. When applied to real atmospheric air conditions, this low silica Na-ZSM-5 effectively adsorbed CO2 in the presence of oxygen and moisture, emphasizing its potential for a direct air capture adsorbent. This study provides insights into the properties of zeolites for CO2 capture from air, highlighting their potential as effective DAC sorbents that can be produced on a large scale.

키워드

Direct air capture; Zeolite; Na + -exchange; Acid-basic site; CATALYTIC-PROPERTIES; CARBON-DIOXIDE; ADSORPTION; BASICITY; ALKALI; NA; ADSORBENTS; FAUJASITES; ZSM-5; FTIR
제목
Sodium cation exchanged zeolites for direct air capture of CO2
저자
Kim, Do Yeong; Bae, Wo Bin; Min, Haehyun; Ryu, Kyeong-Hun; Kweon, Sungjoon; Tran, Linh Mai; Kim, Young Jin; Park, Min Bum; Kang, Sung Bong
DOI
10.1016/j.apsadv.2024.100664
발행일
2025-01
유형
Article
저널명
APPLIED SURFACE SCIENCE ADVANCES
권
25