[HTML][HTML] Evolution paths from gray to turquoise hydrogen via catalytic steam methane reforming: Current challenges and future developments

S Saeidi, A Sápi, AH Khoja, S Najari, M Ayesha… - … and Sustainable Energy …, 2023 - Elsevier
Fossil fuel depletion, global warming, climate change, and steep hikes in the price of fuel are
driving scientists to investigate commercial and environmentally friendly energy carriers like …

Review of hydrogen production using chemical-loo** technology

M Luo, Y Yi, S Wang, Z Wang, M Du, J Pan… - … and Sustainable Energy …, 2018 - Elsevier
Hydrogen is an attractive energy carrier due to its potentially high energy efficiency and low
generation of pollutants, which can be used for transportation and stationary power …

[HTML][HTML] Techno-economic assessment of blue and green ammonia as energy carriers in a low-carbon future

CA Del Pozo, S Cloete - Energy Conversion and Management, 2022 - Elsevier
Ammonia is an industrial chemical and the basic building block for the fertilizer industry.
Lately, attention has shifted towards using ammonia as a carbon-free energy vector, due to …

[HTML][HTML] Blue, green, and turquoise pathways for minimizing hydrogen production costs from steam methane reforming with CO2 capture

F Pruvost, S Cloete, CA del Pozo, A Zaabout - Energy Conversion and …, 2022 - Elsevier
Rising climate change ambitions require large-scale clean hydrogen production in the near
term.“Blue” hydrogen from conventional steam methane reforming (SMR) with pre …

A review of chemical loo** reforming technologies for hydrogen production: recent advances and future challenges

R Ramezani, L Di Felice, F Gallucci - Journal of Physics: Energy, 2023 - iopscience.iop.org
Faced with increasingly serious energy and global warming, it is critical to put forward an
alternative non-carbonaceous fuel. In this regard, hydrogen appears as the ultimate clean …

[HTML][HTML] Development of stable oxygen carrier materials for chemical loo** processes—a review

Y De Vos, M Jacobs, P Van Der Voort, I Van Driessche… - Catalysts, 2020 - mdpi.com
This review aims to give more understanding of the selection and development of oxygen
carrier materials for chemical loo**. Chemical loo**, a rising star in chemical …

Hydrogen production and reduction of Ni-based oxygen carriers during chemical loo** steam reforming of ethanol in a fixed-bed reactor

B Dou, H Zhang, G Cui, Z Wang, B Jiang… - international journal of …, 2017 - Elsevier
Hydrogen production and reduction of Ni-based oxygen carriers (OCs) during chemical
loo** steam reforming (CLSR) of ethanol were studied in a fixed-bed reactor using four …

[HTML][HTML] Efficient hydrogen production with CO2 capture using gas switching reforming

SM Nazir, JH Cloete, S Cloete, S Amini - Energy, 2019 - Elsevier
Hydrogen is a promising carbon-neutral energy carrier for a future decarbonized energy
sector. This work presents process simulation studies of the gas switching reforming (GSR) …

[HTML][HTML] Carbon-negative hydrogen: Exploring the techno-economic potential of biomass co-gasification with CO2 capture

CA del Pozo, S Cloete, ÁJ Álvaro - Energy Conversion and Management, 2021 - Elsevier
The hydrogen economy is receiving increasing attention as a complement to electrification
in the global energy transition. Clean hydrogen production is often viewed as a competition …

Chemical loo** dry reforming of methane with hydrogen generation on Fe2O3/Al2O3 oxygen carrier

M Zhu, Y Song, S Chen, M Li, L Zhang… - Chemical Engineering …, 2019 - Elsevier
A chemical loo** dry reforming process for co-production of hydrogen and syngas was
proposed. This process contains four different stages, ie reduction, dry reforming, steam …