Fuel reforming processes for hydrogen production

EMA Mokheimer, MR Shakeel, A Harale, S Paglieri… - Fuel, 2024 - Elsevier
Currently most of the hydrogen produced worldwide is obtained by reforming fossil fuels.
The advancement and use of carbon capture and sequestration technologies ensure the CO …

Computational fluid dynamics simulations of membrane gas separation: Overview, challenges and future perspectives

K Foo, YY Liang, PS Goh, DF Fletcher - Chemical Engineering Research …, 2023 - Elsevier
Membrane-based gas separation (GS) has emerged as a competitive separation technology
for industrial gas separation applications due to its simpler operation and cost-effective …

Effect of temperature and heat flux boundary conditions on hydrogen production in membrane-integrated steam-methane reformer

R Ben-Mansour, MA Haque, MA Habib, S Paglieri… - Applied Energy, 2023 - Elsevier
In order to operate reforming plants at maximum efficiency it is important to investigate their
operation under various conditions. This study aims to perform a comprehensive …

Impact of natural gas composition on steam thermal plasma assisted pyrolysis for hydrogen and solid carbon production

A Mašláni, M Hlína, M Hrabovský, P Křenek… - Energy Conversion and …, 2023 - Elsevier
Pyrolysis of simulated natural gas (NG) was studied experimentally in the reactor equipped
with a steam thermal plasma torch. Simulated NG consisted of 75% of methane, 15% of …

Synergistic enhancement of reaction and separation for a solar membrane reactor by topology optimization of catalyst bed

XY Tang, WW Yang, X Ma, YL He - Chemical Engineering Journal, 2023 - Elsevier
Enhancing separation and reaction in solar membrane reactors is critical for achieving
temperature reduction and efficiency improvement. Based on the topology optimization …

Theoretical analysis of a solar membrane reactor with enhanced mass transfer by using helical inserts

WW Yang, XY Tang, X Ma, YJ Yang, PY Dou… - Energy Conversion and …, 2023 - Elsevier
Product separation Pd-based membrane can boost performance of conventional solar-
driven thermochemical reactors by accelerating reaction processes. However, concentration …

System level performance analysis and parameter optimization of hydrogen production based on solid oxide electrolytic cell

Y Chen, X Wu, H Hu, J Zhang - Applied Energy, 2023 - Elsevier
The high-temperature solid oxide electrolytic cell (SOEC) is expected to be widely used in
large-scale energy storage, the chemical industry, distributed energy, and other fields due to …

[HTML][HTML] Investigation of steam methane reforming in a Pd–Ru membrane reactor with a counter-current configuration

WJ Sheu, ZW Hsu, WH Chen, YC Chen - International Journal of Hydrogen …, 2024 - Elsevier
Steam methane reforming (SMR) in a membrane reactor is a promising method to
continuously produce high-purity hydrogen, which can directly supply to the proton …

Evaluation of heat transfer coefficient between a reacting steam-methane mixture and preheated Ni-based catalyst

D Pashchenko, I Karpilov - Powder Technology, 2023 - Elsevier
This work is devoted to the investigation of a heat transfer inside a steam methane reformer
filled with pre-heated Ni-based catalyst pellets of various shapes. Various particle shapes …

Enabling low-carbon membrane steam methane reforming: Comparative analysis and multi-objective NSGA-II-integrated Bayesian optimization

A Cherif, M Atwair, TA Atsbha, M Zarei… - Energy Conversion and …, 2023 - Elsevier
This study comparatively investigated and optimized membrane steam methane reforming
(M− SMR) over a Ni/Al 2 O 3 catalyst in a rectangular channel using a Pd-based membrane …