Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor

This work investigates the effect of reaction temperature on methane conversion and hydrogen yield over coated Nickel Aluminide (Ni3Al) as an intermetallic alloy catalyst in micro reactor. The Ni3Al was impregnated at micro scale using dip coating technique. The coating impregnation process, consist...

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Main Authors: Madon, Rais Hanizam, Mas Fawzi, Mas Fawzi, Sarwani, Muhamad Khairul Ilman, Osman, S.A., Razali, Mohd Azahari, Mohammad, Abdul Wahab
Format: Article
Language:English
Published: Penerbit Akademia Baru 2018
Subjects:
Online Access:http://eprints.uthm.edu.my/5935/1/AJ%202018%20%28945%29%20Effect%20of%20reaction%20temperature%20on%20steam%20methane%20reforming%E2%80%99s%20yield%20over%20coated%20nickel%20aluminide%20%28Ni3Al%29%20catalyst%20in%20micro%20reactor.pdf
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author Madon, Rais Hanizam
Mas Fawzi, Mas Fawzi
Sarwani, Muhamad Khairul Ilman
Osman, S.A.
Razali, Mohd Azahari
Mohammad, Abdul Wahab
author_facet Madon, Rais Hanizam
Mas Fawzi, Mas Fawzi
Sarwani, Muhamad Khairul Ilman
Osman, S.A.
Razali, Mohd Azahari
Mohammad, Abdul Wahab
author_sort Madon, Rais Hanizam
collection UTHM
description This work investigates the effect of reaction temperature on methane conversion and hydrogen yield over coated Nickel Aluminide (Ni3Al) as an intermetallic alloy catalyst in micro reactor. The Ni3Al was impregnated at micro scale using dip coating technique. The coating impregnation process, consist of a few stages which are substrates and solgel preparation, dip coating, calcination and reduction of oxide molecule. The coated Ni3Al were characterized by X-Ray Diffraction (XRD) and Temperature Programming Reduction (TPR) then activated using H2. The XRD and TPR results showed present of Ni3Al on the coated surface and was successfully activated at 500°C and 46 minutes. Meanwhile, the steam methane reforming with the catalytic reaction took place at temperature from 500°C to 700°C, steam to carbon ratio of 3:1 and 5 hours reaction time. The reaction temperature of 600°C obtained the highest methane conversion of 43% and hydrogen yield of 29%. The limitation point of reaction activity either as zero reaction or deactivation point was found at 500°C and 700°C. The coated Ni3Al showed catalytic activity for each reaction temperature and work accordingly on the heterogenous catalyst principal theory of lag, exponential, stationary and deactivation stage.
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spelling uthm.eprints-59352022-01-25T00:52:03Z http://eprints.uthm.edu.my/5935/ Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor Madon, Rais Hanizam Mas Fawzi, Mas Fawzi Sarwani, Muhamad Khairul Ilman Osman, S.A. Razali, Mohd Azahari Mohammad, Abdul Wahab TJ Mechanical engineering and machinery TJ255-265 Heat engines This work investigates the effect of reaction temperature on methane conversion and hydrogen yield over coated Nickel Aluminide (Ni3Al) as an intermetallic alloy catalyst in micro reactor. The Ni3Al was impregnated at micro scale using dip coating technique. The coating impregnation process, consist of a few stages which are substrates and solgel preparation, dip coating, calcination and reduction of oxide molecule. The coated Ni3Al were characterized by X-Ray Diffraction (XRD) and Temperature Programming Reduction (TPR) then activated using H2. The XRD and TPR results showed present of Ni3Al on the coated surface and was successfully activated at 500°C and 46 minutes. Meanwhile, the steam methane reforming with the catalytic reaction took place at temperature from 500°C to 700°C, steam to carbon ratio of 3:1 and 5 hours reaction time. The reaction temperature of 600°C obtained the highest methane conversion of 43% and hydrogen yield of 29%. The limitation point of reaction activity either as zero reaction or deactivation point was found at 500°C and 700°C. The coated Ni3Al showed catalytic activity for each reaction temperature and work accordingly on the heterogenous catalyst principal theory of lag, exponential, stationary and deactivation stage. Penerbit Akademia Baru 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/5935/1/AJ%202018%20%28945%29%20Effect%20of%20reaction%20temperature%20on%20steam%20methane%20reforming%E2%80%99s%20yield%20over%20coated%20nickel%20aluminide%20%28Ni3Al%29%20catalyst%20in%20micro%20reactor.pdf Madon, Rais Hanizam and Mas Fawzi, Mas Fawzi and Sarwani, Muhamad Khairul Ilman and Osman, S.A. and Razali, Mohd Azahari and Mohammad, Abdul Wahab (2018) Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 50 (2). pp. 170-177. ISSN 2289-7879
spellingShingle TJ Mechanical engineering and machinery
TJ255-265 Heat engines
Madon, Rais Hanizam
Mas Fawzi, Mas Fawzi
Sarwani, Muhamad Khairul Ilman
Osman, S.A.
Razali, Mohd Azahari
Mohammad, Abdul Wahab
Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title_full Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title_fullStr Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title_full_unstemmed Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title_short Effect of reaction temperature on steam methane reforming’s yield over coated nickel aluminide (Ni3Al) catalyst in micro reactor
title_sort effect of reaction temperature on steam methane reforming s yield over coated nickel aluminide ni3al catalyst in micro reactor
topic TJ Mechanical engineering and machinery
TJ255-265 Heat engines
url http://eprints.uthm.edu.my/5935/1/AJ%202018%20%28945%29%20Effect%20of%20reaction%20temperature%20on%20steam%20methane%20reforming%E2%80%99s%20yield%20over%20coated%20nickel%20aluminide%20%28Ni3Al%29%20catalyst%20in%20micro%20reactor.pdf
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