Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review

CH4 and CO2 are the two foremost greenhouse gases which are accountable for global warming. Controlling of their emissions and proper utilization has become significant challenge in the field of energy researches. Reforming of CH4 with steam and CO2 is one of the feasible solutions to convert the pr...

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Main Authors: Abdulwahid, Arman, Hagos, F. Y., Abdul Adam, Abdullah, R., Mamat, Abd Rashid, Abd Aziz, Cheng, C. K.
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing 2020
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/29539/1/Syngas%20production%20through%20steam%20and%20CO2.pdf
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author Abdulwahid, Arman
Hagos, F. Y.
Abdul Adam, Abdullah
R., Mamat
Abd Rashid, Abd Aziz
Cheng, C. K.
author_facet Abdulwahid, Arman
Hagos, F. Y.
Abdul Adam, Abdullah
R., Mamat
Abd Rashid, Abd Aziz
Cheng, C. K.
author_sort Abdulwahid, Arman
collection UMP
description CH4 and CO2 are the two foremost greenhouse gases which are accountable for global warming. Controlling of their emissions and proper utilization has become significant challenge in the field of energy researches. Reforming of CH4 with steam and CO2 is one of the feasible solutions to convert the primary sources of greenhouse gases into syngas. Nowadays, syngas is an essential resource for many industrial applications to produce beneficial value-added products. Besides, it has been referred to as a transition from the fossil fuel towards pure hydrogen energy in the stationary internal combustion engines. Methane reforming with steam or CO2 occurs as a result of the reaction between methane and steam or CO2 in the presence of a catalyst at high temperature. Reaction routes need to be controlled to achieve the desired outputs. To control the reaction path, there are several parameters need to be technically optimized. Reaction kinetic is also necessary to find the reaction rate and select the convenience type of catalyst that can enhance the reaction rate. Catalyst selection and preparation are essential in the reaction because they contribute to the reaction outputs mainly of the syngas ratio (H2/CO). This manuscript is intended to observe the trend of technology improvements on thermodynamic analysis and kinetic study of steam and CO2 reforming of methane reactions over the Ni-based catalyst. It also presents the evaluation of the catalytic effect/properties and their relationship with the performance of the catalyst needed for the design and suitable for steam and dry reforming of methane reactions.
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spelling UMPir295392020-10-19T01:42:40Z http://umpir.ump.edu.my/id/eprint/29539/ Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review Abdulwahid, Arman Hagos, F. Y. Abdul Adam, Abdullah R., Mamat Abd Rashid, Abd Aziz Cheng, C. K. TP Chemical technology TS Manufactures CH4 and CO2 are the two foremost greenhouse gases which are accountable for global warming. Controlling of their emissions and proper utilization has become significant challenge in the field of energy researches. Reforming of CH4 with steam and CO2 is one of the feasible solutions to convert the primary sources of greenhouse gases into syngas. Nowadays, syngas is an essential resource for many industrial applications to produce beneficial value-added products. Besides, it has been referred to as a transition from the fossil fuel towards pure hydrogen energy in the stationary internal combustion engines. Methane reforming with steam or CO2 occurs as a result of the reaction between methane and steam or CO2 in the presence of a catalyst at high temperature. Reaction routes need to be controlled to achieve the desired outputs. To control the reaction path, there are several parameters need to be technically optimized. Reaction kinetic is also necessary to find the reaction rate and select the convenience type of catalyst that can enhance the reaction rate. Catalyst selection and preparation are essential in the reaction because they contribute to the reaction outputs mainly of the syngas ratio (H2/CO). This manuscript is intended to observe the trend of technology improvements on thermodynamic analysis and kinetic study of steam and CO2 reforming of methane reactions over the Ni-based catalyst. It also presents the evaluation of the catalytic effect/properties and their relationship with the performance of the catalyst needed for the design and suitable for steam and dry reforming of methane reactions. IOP Publishing 2020 Conference or Workshop Item PeerReviewed pdf en cc_by http://umpir.ump.edu.my/id/eprint/29539/1/Syngas%20production%20through%20steam%20and%20CO2.pdf Abdulwahid, Arman and Hagos, F. Y. and Abdul Adam, Abdullah and R., Mamat and Abd Rashid, Abd Aziz and Cheng, C. K. (2020) Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review. In: IOP Conference Series: Materials Science and Engineering, Energy Security and Chemical Engineering Congress , 17-19 July 2019 , Kuala Lumpur, Malaysia. pp. 1-18., 736 (042032). ISSN 1757-899X https://doi.org/10.1088/1757-899X/736/4/042032
spellingShingle TP Chemical technology
TS Manufactures
Abdulwahid, Arman
Hagos, F. Y.
Abdul Adam, Abdullah
R., Mamat
Abd Rashid, Abd Aziz
Cheng, C. K.
Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title_full Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title_fullStr Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title_full_unstemmed Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title_short Syngas production through steam and CO2 reforming of methane over Ni-based catalyst-A Review
title_sort syngas production through steam and co2 reforming of methane over ni based catalyst a review
topic TP Chemical technology
TS Manufactures
url http://umpir.ump.edu.my/id/eprint/29539/1/Syngas%20production%20through%20steam%20and%20CO2.pdf
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