Jedli Hedi, Bouzgarrou Souhail Mohammed, Hassani Rym, Sabi Ehab, Slimi Khalifa
University of Monastir, National Engineering School of Monastir, Laboratory of Studies of Thermal Systems and Energy, LR99ES31, 5019, Monastir, Tunisia.
Civil and Architectural Engineering Department, College of Engineering and Computer Sciences, Jazan University, Jazan, Saudi Arabia.
Heliyon. 2024 Nov 28;10(23):e40672. doi: 10.1016/j.heliyon.2024.e40672. eCollection 2024 Dec 15.
Adsorption equilibrium and kinetics of CO, H and CH on zeolite 13 X were carried out using the volumetric method. The zeolite 13 X was characterized via XRD, SEM and N adsorption-desorption. Adsorption isotherms of various gas were investigated over a full range of temperatures at 298, 308 and 313 K. Langmuir's equilibrium model and the heat of adsorption was used to correlate the adsorption isotherms over a wide range of pressure. A classical micropore diffusion approach was applied to investigate the kinetic adsorption. At 298 K, the selectivity of CO/H and CO/CH of the zeolite 13 X was 16.52 and 62.61, respectively. However, zeolite 13 X is one of the most suitable adsorbents for CO and CH storage, since it has a very high adsorption capacity for both gases. The influence of gas pressure on diffusivity for various absorber-adsorbent systems has been examined. The adsorption experiments with gas mixtures such as H, CO and CH on 13 X zeolite show that this adsorbent has potential application in the gas separation and purification process.
采用容量法研究了CO、H和CH在13X沸石上的吸附平衡和动力学。通过XRD、SEM和N吸附-脱附对13X沸石进行了表征。在298、308和313K的全温度范围内研究了各种气体的吸附等温线。使用朗缪尔平衡模型和吸附热对宽压力范围内的吸附等温线进行关联。应用经典的微孔扩散方法研究动力学吸附。在298K时,13X沸石对CO/H和CO/CH的选择性分别为16.52和62.61。然而,13X沸石是CO和CH储存最合适的吸附剂之一,因为它对这两种气体都具有非常高的吸附容量。研究了气体压力对各种吸收剂-吸附剂体系扩散率的影响。在13X沸石上进行H、CO和CH等气体混合物的吸附实验表明,这种吸附剂在气体分离和净化过程中具有潜在应用。