[HTML][HTML] Current advances in syngas (CO+ H2) production through bi-reforming of methane using various catalysts: A review

US Mohanty, M Ali, MR Azhar, A Al-Yaseri… - international journal of …, 2021 - Elsevier
Today, bi-reforming of methane is considered as an emerging replacement for the
generation of high-grade synthesis gas (H 2: CO= 2.0), and also as an encouraging …

A review on recent advances in dry reforming of methane over Ni-and Co-based nanocatalysts

F Sharifianjazi, A Esmaeilkhanian, L Bazli… - international journal of …, 2022 - Elsevier
The recent environmental-related issues such as climate change and global warming have
sparked scientists' interest in finding a way to reduce the emission of greenhouse gases …

Formation, control, and elimination of carbon on Ni-based catalyst during CO2 and CH4 conversion via dry reforming process: A review

L Baharudin, N Rahmat, NH Othman, N Shah… - Journal of CO2 …, 2022 - Elsevier
Dry reforming of methane (DRM) promises to reduce greenhouse gas emission by
converting CO 2 and CH 4 (produced eg in anaerobic digestion processes) into syngas with …

Sustainable and energy efficient hydrogen production via glycerol reforming techniques: A review

F Qureshi, M Yusuf, AA Pasha, HW Khan… - International Journal of …, 2022 - Elsevier
Hydrogen-based energy solutions are among the alternative energy choices due to their
clean emissions and high efficiency. H 2 is a highly convenient energy source, particularly if …

A review of recent developments in hydrogen production via biogas dry reforming

Y Gao, J Jiang, Y Meng, F Yan, A Aihemaiti - Energy Conversion and …, 2018 - Elsevier
Biogas is a promising renewable energy resource. Among the existing biogas utilization
technologies, dry reforming can convert two major greenhouse gases in biogas, methane …

Hydrogen production through methane reforming processes using promoted-Ni/mesoporous silica: A review

Z Taherian, A Khataee, N Han, Y Orooji - Journal of Industrial and …, 2022 - Elsevier
The catalyst's performance for hydrogen production is strongly dependent on the proper
selection of active metals, supports, and promoters. Nickel catalysts can also be a strong …

Reforming of methane: effects of active metals, supports, and promoters

AS Al-Fatesh, N Patel, AH Fakeeha, MF Alotibi… - Catalysis …, 2023 - Taylor & Francis
The dry reforming reaction (DRM) had capacity to mitigate the greenhouse gases from
environment as well as to produce syngas as a chemical feedstock. Various doped metal …

Upgrading biogas into syngas through dry reforming

S Jung, J Lee, DH Moon, KH Kim, EE Kwon - Renewable and Sustainable …, 2021 - Elsevier
Biogas is comprised of two major compounds (ie, CH 4 and CO 2) derived from fermentation
of organic wastes. Therefore, biogas can be used as a source for the generation of syngas …

Advanced synthesis strategies of mesoporous SBA-15 supported catalysts for catalytic reforming applications: A state-of-the-art review

S Singh, R Kumar, HD Setiabudi, S Nanda… - Applied Catalysis A …, 2018 - Elsevier
Catalytic deactivation due to agglomeration and metal particle growth has motivated the
researchers around the globe to encapsulate the active metal particles into protective shells …

Recent advances in Ni-based stable catalysts for methane dry reforming: stable catalysts' preparation review

SS Mabaleha, F Gholizadeh, P Kalita - Molecular Catalysis, 2023 - Elsevier
This paper reports advances on the preparation of stable Ni-based catalysts for DRM
reaction using various supports, promoters, synthesis methods, and pre-treatment …