Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis

An increase in the human population and the energy crisis have gained global attention in the search for alternative energy resources. Biomass energy has garnered significant attention as a sustainable alternative to fossil fuels, which can reduce greenhouse gas emissions and mitigate carbon footpri...

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Main Authors: Mohamad Jamil Arif, Mansor, Irna Haslina, Ibrahim, Asmida, Ideris, Wantala, Kitirote, Nguyen, Van Cuong, Sumaiya, Zainal Abidin
Format: Article
Language:English
Published: Elsevier Ltd. 2025
Subjects:
Online Access:https://umpir.ump.edu.my/id/eprint/45291/
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author Mohamad Jamil Arif, Mansor
Irna Haslina, Ibrahim
Asmida, Ideris
Wantala, Kitirote
Nguyen, Van Cuong
Sumaiya, Zainal Abidin
author_facet Mohamad Jamil Arif, Mansor
Irna Haslina, Ibrahim
Asmida, Ideris
Wantala, Kitirote
Nguyen, Van Cuong
Sumaiya, Zainal Abidin
author_sort Mohamad Jamil Arif, Mansor
building UMP Institutional Repository
collection Online Access
description An increase in the human population and the energy crisis have gained global attention in the search for alternative energy resources. Biomass energy has garnered significant attention as a sustainable alternative to fossil fuels, which can reduce greenhouse gas emissions and mitigate carbon footprints. The usage of biomass energy shows certain challenges and problems, such as tar formation. In order to understand this issue, a catalytic steam reforming of biomass tar has been carefully investigated. However, this process still faces several complications, such as catalyst deactivation, coke deposition, and other operational challenges, which require further research and improvement. This study employs a bibliometric analysis conducted from 1997 to 2024, pointing out keywords, nations, journals, inter-country co-authorship networks, and co-occurrence visualisations. The judgement was carried-out by utilising the Scopus database® and further demonstrated through R-Studio and VOSviewer. This inclusive literature review provides a thorough and up-to-date overview of the research on catalytic steam reforming of biomass tar. This question brings out the critical role of bimetallic catalysts and the need for continued invention in this field to address the global energy and environmental challenges.
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institution Universiti Malaysia Pahang
institution_category Local University
language English
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publishDate 2025
publisher Elsevier Ltd.
recordtype eprints
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spelling ump-452912025-08-07T03:19:29Z https://umpir.ump.edu.my/id/eprint/45291/ Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis Mohamad Jamil Arif, Mansor Irna Haslina, Ibrahim Asmida, Ideris Wantala, Kitirote Nguyen, Van Cuong Sumaiya, Zainal Abidin QD Chemistry TP Chemical technology An increase in the human population and the energy crisis have gained global attention in the search for alternative energy resources. Biomass energy has garnered significant attention as a sustainable alternative to fossil fuels, which can reduce greenhouse gas emissions and mitigate carbon footprints. The usage of biomass energy shows certain challenges and problems, such as tar formation. In order to understand this issue, a catalytic steam reforming of biomass tar has been carefully investigated. However, this process still faces several complications, such as catalyst deactivation, coke deposition, and other operational challenges, which require further research and improvement. This study employs a bibliometric analysis conducted from 1997 to 2024, pointing out keywords, nations, journals, inter-country co-authorship networks, and co-occurrence visualisations. The judgement was carried-out by utilising the Scopus database® and further demonstrated through R-Studio and VOSviewer. This inclusive literature review provides a thorough and up-to-date overview of the research on catalytic steam reforming of biomass tar. This question brings out the critical role of bimetallic catalysts and the need for continued invention in this field to address the global energy and environmental challenges. Elsevier Ltd. 2025 Article PeerReviewed pdf en https://umpir.ump.edu.my/id/eprint/45291/1/Recent%20study%20of%20transition%20bimetallic%20catalyst%20in%20biomass%20tar%20steam.pdf Mohamad Jamil Arif, Mansor and Irna Haslina, Ibrahim and Asmida, Ideris and Wantala, Kitirote and Nguyen, Van Cuong and Sumaiya, Zainal Abidin (2025) Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis. Biomass and Bioenergy, 202 (108166). pp. 1-31. ISSN 0961-9534. (Published) https://doi.org/10.1016/j.biombioe.2025.108166 https://doi.org/10.1016/j.biombioe.2025.108166 https://doi.org/10.1016/j.biombioe.2025.108166
spellingShingle QD Chemistry
TP Chemical technology
Mohamad Jamil Arif, Mansor
Irna Haslina, Ibrahim
Asmida, Ideris
Wantala, Kitirote
Nguyen, Van Cuong
Sumaiya, Zainal Abidin
Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title_full Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title_fullStr Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title_full_unstemmed Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title_short Recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: A comprehensive bibliometric analysis
title_sort recent study of transition bimetallic catalyst in biomass tar steam reforming for hydrogen-rich syngas: a comprehensive bibliometric analysis
topic QD Chemistry
TP Chemical technology
url https://umpir.ump.edu.my/id/eprint/45291/
https://umpir.ump.edu.my/id/eprint/45291/
https://umpir.ump.edu.my/id/eprint/45291/