LAPSE:2023.17316
Published Article
LAPSE:2023.17316
Deactivation Model Study of High Temperature H2S Wet-Desulfurization by Using ZnO
March 6, 2023
Abstract
High-temperature desulfurization techniques are fundamental for the development of reliable and efficient conversion systems of low-cost fuels and biomass that answer to the nowadays environmental and energy security issues. This is particularly true for biomass gasification coupled to SOFC systems where the sulfur content has to be minimized before being fed to the SOFC. Thus, commercially available zinc oxide has been studied and characterized as a desulfurizing agent in a fixed-bed reactor at high temperatures from 400 °C to 600 °C. The sorbent material was characterized by XRD, BET, SEM, and EDS analyses before and after adsorption. The sorbent’s sorption capacity has been evaluated at different temperatures, as well as the breakthrough curves. Moreover, the kinetic parameters as the initial sorption rate constant k0, the deactivation rate constant kd, and the activation energy have been calculated using the linearized deactivation model. The best performances have been obtained at 550 °C, obtaining a sorption capacity of 5.4 g per 100 g of sorbent and a breakthrough time of 2.7 h. These results can be used to extend ZnO desulfurization techniques to a higher temperature than the ones used today (i.e., 550 °C with respect to 400 °C).
Keywords
deactivation model, desulfurization, Energy, zinc oxide sorbent
Subject
Suggested Citation
Hatunoglu A, Dell’Era A, Del Zotto L, Di Carlo A, Ciro E, Bocci E. Deactivation Model Study of High Temperature H2S Wet-Desulfurization by Using ZnO. (2023). LAPSE:2023.17316
Author Affiliations
Hatunoglu A: Department of Engineering Sciences, Università degli Studi Guglielmo Marconi, 00193 Rome, Italy [ORCID]
Dell’Era A: Department of Basic and Applied Sciences for Engineering, Sapienza University of Rome, 00161 Rome, Italy [ORCID]
Del Zotto L: CREAT, Centro di Ricerca su Energia, Ambiente e Territorio, eCampus University, 22060 Novedrate, Italy [ORCID]
Di Carlo A: Department of Industrial and Computer Engineering and Economics, University of L’Aquila, 67100 L’Aquila, Italy
Ciro E: ICMA Department, University Sapienza Rome, Via Eudossiana 18, 00184 Roma, Italy [ORCID]
Bocci E: Department of Engineering Sciences, Università degli Studi Guglielmo Marconi, 00193 Rome, Italy [ORCID]
Journal Name
Energies
Volume
14
Issue
23
First Page
8019
Year
2021
Publication Date
2021-12-01
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en14238019, Publication Type: Journal Article
Record Map
Published Article

LAPSE:2023.17316
This Record
External Link

https://doi.org/10.3390/en14238019
Publisher Version
Download
Files
Mar 6, 2023
Main Article
License
CC BY 4.0
Meta
Record Statistics
Record Views
203
Version History
[v1] (Original Submission)
Mar 6, 2023
 
Verified by curator on
Mar 6, 2023
This Version Number
v1
Citations
Most Recent
This Version
URL Here
https://psecommunity.org/LAPSE:2023.17316
 
Record Owner
Auto Uploader for LAPSE
Links to Related Works
Directly Related to This Work
Publisher Version