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Effect of Al modification on the adsorption of As2O3 on the CaSiO3(001) surface: A DFT study.

Authors :
Shen, Peng
Wu, Sikai
Hu, Chen
Cheng, Zhihai
Wu, Jiang
Luo, Guangqian
Yao, Hong
Mao, Xu
Song, Mao
Yang, Xiaolian
Source :
Journal of Molecular Graphics & Modelling. Jan2023, Vol. 118, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

CaSiO 3 is highly resistant to sintering and can trap arsenic at high temperatures in the boiler furnace. However, the trapping capacity of CaSiO 3 for arsenic does not meet the requirements of practical applications, and it is easy to react with acidic gases, which significantly affects the adsorptive property of arsenic. In this paper, the effect of Al modification on the As 2 O 3 adsorption behaviour on the CaSiO 3 (001) surface was systematically investigated using a density functional theory. By comparing the magnitude of adsorption energy of different sites, the active site of As 2 O 3 adsorbed on the surface of CaSiO 3 (001) was determined to be Ca, and the adsorption activity of As 2 O 3 by the silicon oxygen chain composed of [SiO 4 ] tetrahedron is deficient. The Si atoms in the [SiO 4 ] tetrahedral structure are directly replaced by Al atoms, the difference in bond length and bond energy between Al–O bond and Si–O bond is used to promote the redistribution of surface charge and the increase of local structural bond angle of CaSiO 3 (001), leading to the exposure of new active sites (Si-top and Al-top sites) on the silicon oxygen chain. The new active site can realize the chemical adsorption of As 2 O 3 , the higher adsorption energy of the Al-top site is attributed to the stronger s-p orbital hybridization between Al and O atoms after doping, which is more conducive to the charge transfer between As 2 O 3 and the adsorbent surface. In this work, influence of SO 2 and HCl gases on the adsorption of As 2 O 3 by modified silicon oxygen chains was also discussed. The results show that SO 2 and HCl in the flue gas may occupy the Al-top site on the silicon oxygen chain through chemical adsorption, and reduce the activity of this site, thereby affecting the adsorption of As 2 O 3. However, the exposed Si-top sites owing to Al doping show good acidic gas resistance, which in turn help the surface of Al–CaSiO 3 (001) can also maintain stable adsorption of As 2 O 3 in SO 2 and HCl atmosphere. [Display omitted] • The active site of As 2 O 3 adsorption on CaSiO 3 (001) surface was determined to be Ca-top site. • Successfully enhanced the adsorption activity of CaSiO 3 (001) surface to As 2 O 3 by Al doping silicon oxygen chains. • The s-p orbital hybridization between Al and O is strong, which is conducive to charge transfer in the reaction process. • The doped Al-CaSiO 3 (001) surface has certain acid resistance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10933263
Volume :
118
Database :
Academic Search Index
Journal :
Journal of Molecular Graphics & Modelling
Publication Type :
Academic Journal
Accession number :
160441563
Full Text :
https://doi.org/10.1016/j.jmgm.2022.108357