Methane decomposition to produce COx-free hydrogen and nano-carbon over metal catalysts: A review

JX Qian, TW Chen, LR Enakonda, DB Liu… - International Journal of …, 2020‏ - Elsevier
Catalytic decomposition of methane (CDM) is a promising technology for producing CO x-
free hydrogen and nano-carbon, meanwhile it is a prospective substitute to steam reforming …

Promotional roles of second metals in catalyzing methane decomposition over the Ni-based catalysts for hydrogen production: A critical review

S Karimi, F Bibak, F Meshkani, A Rastegarpanah… - International Journal of …, 2021‏ - Elsevier
The thermocatalytic decomposition (TCD) of methane is considered as a milestone towards
the production of valuable CO x-free hydrogen and carbon nanomaterials without the use of …

Methane pyrolysis for zero-emission hydrogen production: a potential bridge technology from fossil fuels to a renewable and sustainable hydrogen economy

N Sánchez-Bastardo, R Schlögl… - Industrial & Engineering …, 2021‏ - ACS Publications
Hydrogen plays a key role in many industrial applications and is currently seen as one of the
most promising energy vectors. Many efforts are being made to produce hydrogen with zero …

Catalytic methane decomposition to boost the energy transition: Scientific and technological advancements

L Alves, V Pereira, T Lagarteira, A Mendes - Renewable and Sustainable …, 2021‏ - Elsevier
Decarbonization of the energy sector is a topic of paramount importance to avoid irreversible
global warming. Hydrogen has been considered as the most suitable option to replace fossil …

Modern technologies of hydrogen production

I Stenina, A Yaroslavtsev - Processes, 2022‏ - mdpi.com
Transitioning to energy-saving and renewable energy sources is impossible without
accelerated development of hydrogen energy and hydrogen technologies. This review …

Production of hydrogen and value-added carbon materials by catalytic methane decomposition: a review

CQ Pham, TJ Siang, PS Kumar, Z Ahmad… - Environmental …, 2022‏ - Springer
Abstract Dihydrogen (H2), commonly named “hydrogen”, is attracting research interest due
to potential applications in fuel cells, vehicles, pharmaceuticals and gas processing. As a …

Recent progress in anti-coking Ni catalysts for thermo-catalytic conversion of greenhouse gases

X Gao, J Li, M Zheng, S Cai, J Zhang, S Askari… - Process Safety and …, 2021‏ - Elsevier
As global warming has become a major environmental problem, how to effectively reduce or
rationally utilize greenhouse gases has become an important topic. This review summarizes …

[HTML][HTML] Review on COx-free hydrogen from methane cracking: Catalysts, solar energy integration and applications

A Banu, Y Bicer - Energy Conversion and Management: X, 2021‏ - Elsevier
Hydrogen fuel production from methane cracking is a sustainable process compared to the
ones currently in practice due to minimal greenhouse gas emissions. Carbon black that is co …

Blue hydrogen and carbon nanotube production via direct catalytic decomposition of methane in fluidized bed reactor: Capture and extraction of carbon in the form of …

KR Parmar, KK Pant, S Roy - Energy Conversion and Management, 2021‏ - Elsevier
The current study reports a regenerative approach for producing blue hydrogen (CO x-free)
and carbon nanotubes (CNTs) from natural gas (methane). The multi-metallic nickel-based …

Methane decomposition into COx‐free hydrogen over a Ni‐based catalyst: An overview

AL Dipu - International Journal of Energy Research, 2021‏ - Wiley Online Library
Hydrogen is a clean energy medium that can potentially replace fossil fuels in home,
industrial, and transportation environments. Nonoxidative catalytic methane decomposition …