Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation
The rod-like SBA-15 was transformed into fibrous type SBA-15 (F-SBA-15). The Ni/F-SBA-15 was catalytically evaluated in CO2 methanation and compared with conventional Ni/SBA-15. A superior catalytic performance was shown by Ni/F-SBA-15 (CO2 conversion = 99.7%, and CH4 yield = 98.2%) than Ni/SBA-15 (...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Published: |
Elsevier Ltd
2021
|
Subjects: |
_version_ | 1796866149661540352 |
---|---|
author | Bukhari, Syahida Nasuha Chong, Chi Cheng Setiabudi, Herma Dina Cheng, Yoke Wang Teh, Lee Peng Abdul Jalil, Aishah |
author_facet | Bukhari, Syahida Nasuha Chong, Chi Cheng Setiabudi, Herma Dina Cheng, Yoke Wang Teh, Lee Peng Abdul Jalil, Aishah |
author_sort | Bukhari, Syahida Nasuha |
collection | ePrints |
description | The rod-like SBA-15 was transformed into fibrous type SBA-15 (F-SBA-15). The Ni/F-SBA-15 was catalytically evaluated in CO2 methanation and compared with conventional Ni/SBA-15. A superior catalytic performance was shown by Ni/F-SBA-15 (CO2 conversion = 99.7%, and CH4 yield = 98.2%) than Ni/SBA-15 (CO2 conversion = 91.1%, and CH4 yield = 87.5%). This phenomenon was attributed to the favorable physicochemical properties of F-SBA-15 as evidenced by the characterization results. A higher homogeneity of finer Ni was embedded onto the F-SBA-15 support, subsequently strengthened the Ni interaction with F-SBA-15, and increased the amount of moderate basic sites. The in situ FTIR studies evidenced the CO2 methanation over both catalysts proceeded via CO2 dissociation pathway. Three intermediate species (linear carbonyl, unidentate, and bidentate carbonates) were detected for Ni/F-SBA-15, while only bidentate carbonates were detected for Ni/SBA-15, signifying excellent catalytic attributes of Ni/F-SBA-15. Additionally, Ni/F-SBA-15 demonstrated higher stability and coke resistance ability than Ni/SBA-15. |
first_indexed | 2024-03-05T21:07:51Z |
format | Article |
id | utm.eprints-96076 |
institution | Universiti Teknologi Malaysia - ePrints |
last_indexed | 2024-03-05T21:07:51Z |
publishDate | 2021 |
publisher | Elsevier Ltd |
record_format | dspace |
spelling | utm.eprints-960762022-07-03T07:28:52Z http://eprints.utm.my/96076/ Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation Bukhari, Syahida Nasuha Chong, Chi Cheng Setiabudi, Herma Dina Cheng, Yoke Wang Teh, Lee Peng Abdul Jalil, Aishah TP Chemical technology The rod-like SBA-15 was transformed into fibrous type SBA-15 (F-SBA-15). The Ni/F-SBA-15 was catalytically evaluated in CO2 methanation and compared with conventional Ni/SBA-15. A superior catalytic performance was shown by Ni/F-SBA-15 (CO2 conversion = 99.7%, and CH4 yield = 98.2%) than Ni/SBA-15 (CO2 conversion = 91.1%, and CH4 yield = 87.5%). This phenomenon was attributed to the favorable physicochemical properties of F-SBA-15 as evidenced by the characterization results. A higher homogeneity of finer Ni was embedded onto the F-SBA-15 support, subsequently strengthened the Ni interaction with F-SBA-15, and increased the amount of moderate basic sites. The in situ FTIR studies evidenced the CO2 methanation over both catalysts proceeded via CO2 dissociation pathway. Three intermediate species (linear carbonyl, unidentate, and bidentate carbonates) were detected for Ni/F-SBA-15, while only bidentate carbonates were detected for Ni/SBA-15, signifying excellent catalytic attributes of Ni/F-SBA-15. Additionally, Ni/F-SBA-15 demonstrated higher stability and coke resistance ability than Ni/SBA-15. Elsevier Ltd 2021 Article PeerReviewed Bukhari, Syahida Nasuha and Chong, Chi Cheng and Setiabudi, Herma Dina and Cheng, Yoke Wang and Teh, Lee Peng and Abdul Jalil, Aishah (2021) Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation. Chemical Engineering Science, 229 . p. 116141. ISSN 0009-2509 http://dx.doi.org/10.1016/j.ces.2020.116141 |
spellingShingle | TP Chemical technology Bukhari, Syahida Nasuha Chong, Chi Cheng Setiabudi, Herma Dina Cheng, Yoke Wang Teh, Lee Peng Abdul Jalil, Aishah Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title | Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title_full | Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title_fullStr | Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title_full_unstemmed | Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title_short | Ni/Fibrous type SBA-15: Highly active and coke resistant catalyst for CO2 methanation |
title_sort | ni fibrous type sba 15 highly active and coke resistant catalyst for co2 methanation |
topic | TP Chemical technology |
work_keys_str_mv | AT bukharisyahidanasuha nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation AT chongchicheng nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation AT setiabudihermadina nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation AT chengyokewang nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation AT tehleepeng nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation AT abduljalilaishah nifibroustypesba15highlyactiveandcokeresistantcatalystforco2methanation |