Fueling the future: A comprehensive review of hydrogen energy systems and their challenges

TT Le, P Sharma, BJ Bora, VD Tran, TH Truong… - International Journal of …, 2024‏ - Elsevier
This comprehensive study assesses the current state of the hydrogen energy system and
investigates its potential to transform the global energy landscape while addressing …

A comprehensive review of green hydrogen energy systems

F Kourougianni, A Arsalis, AV Olympios, G Yiasoumas… - Renewable Energy, 2024‏ - Elsevier
The global energy sector is currently undergoing a fundamental transformation as it shifts
away from fossil fuels towards renewable energy sources. Green hydrogen is one of the …

A comprehensive review of recent advances in alkaline water electrolysis for hydrogen production

S Sebbahi, A Assila, AA Belghiti, S Laasri… - International Journal of …, 2024‏ - Elsevier
Green hydrogen is typically produced by water electrolysis. In this process, water is split into
hydrogen and oxygen by an electric current. Different technologies exist to produce …

[HTML][HTML] Socio-technical barriers to domestic hydrogen futures: Repurposing pipelines, policies, and public perceptions

JA Gordon, N Balta-Ozkan, SA Nabavi - Applied Energy, 2023‏ - Elsevier
The feasibility of the global energy transition may rest on the ability of nations to harness
hydrogen's potential for cross-sectoral decarbonization. In countries historically reliant on …

Bridging laboratory electrocatalysts with industrially relevant alkaline water electrolyzers

N Wang, S Song, W Wu, Z Deng… - Advanced Energy …, 2024‏ - Wiley Online Library
The alkaline water electrolyzer (AWE) is the earliest and most mature water‐splitting
technology. However, the conventional Raney Ni electrocatalysts dominantly used in AWEs …

Recent advances in high-temperature steam electrolysis with solid oxide electrolysers for green hydrogen production

M Fallah Vostakola, H Ozcan, RS El-Emam… - Energies, 2023‏ - mdpi.com
Hydrogen is known to be the carbon-neutral alternative energy carrier with the highest
energy density. Currently, more than 95% of hydrogen production technologies rely on fossil …

Climate change performance of hydrogen production based on life cycle assessment

GH Patel, J Havukainen, M Horttanainen, R Soukka… - Green chemistry, 2024‏ - pubs.rsc.org
Hydrogen has the potential to revolutionize how we power our lives, from transportation to
energy production. This study aims to compare the climate change impacts and the main …

Optimisation of multi-period renewable energy systems with hydrogen and battery energy storage: A P-graph approach

M Ji, W Zhang, Y Xu, Q Liao, JJ Klemeš… - Energy Conversion and …, 2023‏ - Elsevier
Renewable energy systems play an important role in alleviating environmental pollution,
and their characteristics, including low emissions and recyclability, are highly favourable. At …

Machine learning-based prediction and optimization of green hydrogen production technologies from water industries for a circular economy

MM Kabir, SK Roy, F Alam, SY Nam, KS Im, L Ti**g… - Desalination, 2023‏ - Elsevier
Currently, there exists a significant number of green hydrogen production (GHP)
technologies based on scaling-up issues (SCUI). Optimal prediction and process …

[HTML][HTML] Comparative techno-economic analysis of large-scale renewable energy storage technologies

L Li, B Wang, K Jiao, M Ni, Q Du, Y Liu, B Li, G Ling… - Energy and AI, 2023‏ - Elsevier
Energy storage is an effective way to address the instability of renewable energy generation
modes, such as wind and solar, which are projected to play an important role in the …