Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon

Palm fatty acid distillate (PFAD) is considered as an inedible and renewable feedstock for the production of green diesel. In the current study, green diesel was successfully synthesised via catalytic deoxygenation of PFAD in an environment free of H2 using a mesoporous activated carbon (AC) support...

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Main Authors: M. Safa Gamal, N. Asikin-Mijan, Wan Nor Adira Wan Khalit, Mahashanon Arumugam, Saiman Mohd Izham, Yap, Taufiq Yun Hin
Format: Article
Language:English
Published: 2020
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Online Access:https://eprints.ums.edu.my/id/eprint/25944/1/Effective%20catalytic%20deoxygenation%20of%20palm%20fatty%20acid%20distillate%20for%20green%20diesel%20production%20under%20hydrogen-free%20atmosphere%20over%20bimetallic%20catalyst%20CoMo%20supported%20on%20activated%20carbon.pdf
https://eprints.ums.edu.my/id/eprint/25944/
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spelling my.ums.eprints.259442022-01-10T07:35:03Z https://eprints.ums.edu.my/id/eprint/25944/ Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon M. Safa Gamal N. Asikin-Mijan Wan Nor Adira Wan Khalit Mahashanon Arumugam Saiman Mohd Izham Yap, Taufiq Yun Hin Q Science (General) QK Botany Palm fatty acid distillate (PFAD) is considered as an inedible and renewable feedstock for the production of green diesel. In the current study, green diesel was successfully synthesised via catalytic deoxygenation of PFAD in an environment free of H2 using a mesoporous activated carbon (AC) supported CoMo catalyst with various molybdenum (Mo) concentrations (5–20 wt%). Based on the study results, bimetallic catalyst Co10Mo10/AC formulation exhibited excellent catalytic performance with 92% hydrocarbon components (C8-C20) yield and 89% selectivity for n-(C15 + C17) with a total acid number of 24 mg KOH mg−1 . Based on a comparison study with various supports (AC, γ-Al2O3, TiO2), the AC-supported CoMo catalyst showed higher deoxygenation activity than both Co10Mo10/γ-Al2O3 and Co10Mo10/TiO2 owing to the super acid-base sites as a result of synergism between the CoMo and AC support. The Co10Mo10/AC catalyst demonstrated excellent stability during the study as it maintained the hydrocarbon components yield and selectivity of n-(C15 + C17) > 80% until the sixth run. 2020 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/25944/1/Effective%20catalytic%20deoxygenation%20of%20palm%20fatty%20acid%20distillate%20for%20green%20diesel%20production%20under%20hydrogen-free%20atmosphere%20over%20bimetallic%20catalyst%20CoMo%20supported%20on%20activated%20carbon.pdf M. Safa Gamal and N. Asikin-Mijan and Wan Nor Adira Wan Khalit and Mahashanon Arumugam and Saiman Mohd Izham and Yap, Taufiq Yun Hin (2020) Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon. Fuel Processing Technology, 208.
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
topic Q Science (General)
QK Botany
spellingShingle Q Science (General)
QK Botany
M. Safa Gamal
N. Asikin-Mijan
Wan Nor Adira Wan Khalit
Mahashanon Arumugam
Saiman Mohd Izham
Yap, Taufiq Yun Hin
Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
description Palm fatty acid distillate (PFAD) is considered as an inedible and renewable feedstock for the production of green diesel. In the current study, green diesel was successfully synthesised via catalytic deoxygenation of PFAD in an environment free of H2 using a mesoporous activated carbon (AC) supported CoMo catalyst with various molybdenum (Mo) concentrations (5–20 wt%). Based on the study results, bimetallic catalyst Co10Mo10/AC formulation exhibited excellent catalytic performance with 92% hydrocarbon components (C8-C20) yield and 89% selectivity for n-(C15 + C17) with a total acid number of 24 mg KOH mg−1 . Based on a comparison study with various supports (AC, γ-Al2O3, TiO2), the AC-supported CoMo catalyst showed higher deoxygenation activity than both Co10Mo10/γ-Al2O3 and Co10Mo10/TiO2 owing to the super acid-base sites as a result of synergism between the CoMo and AC support. The Co10Mo10/AC catalyst demonstrated excellent stability during the study as it maintained the hydrocarbon components yield and selectivity of n-(C15 + C17) > 80% until the sixth run.
format Article
author M. Safa Gamal
N. Asikin-Mijan
Wan Nor Adira Wan Khalit
Mahashanon Arumugam
Saiman Mohd Izham
Yap, Taufiq Yun Hin
author_facet M. Safa Gamal
N. Asikin-Mijan
Wan Nor Adira Wan Khalit
Mahashanon Arumugam
Saiman Mohd Izham
Yap, Taufiq Yun Hin
author_sort M. Safa Gamal
title Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
title_short Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
title_full Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
title_fullStr Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
title_full_unstemmed Effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst CoMo supported on activated carbon
title_sort effective catalytic deoxygenation of palm fatty acid distillate for green diesel production under hydrogen-free atmosphere over bimetallic catalyst como supported on activated carbon
publishDate 2020
url https://eprints.ums.edu.my/id/eprint/25944/1/Effective%20catalytic%20deoxygenation%20of%20palm%20fatty%20acid%20distillate%20for%20green%20diesel%20production%20under%20hydrogen-free%20atmosphere%20over%20bimetallic%20catalyst%20CoMo%20supported%20on%20activated%20carbon.pdf
https://eprints.ums.edu.my/id/eprint/25944/
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