Comparative environmental sustainability assessment of biohydrogen production methods

AY Goren, I Dincer, A Khalvati - Science of The Total Environment, 2023 - Elsevier
As the energy crisis has been getting increasingly serious in recent years, the research on
biohydrogen (bioH 2) production as a renewable energy source has been a high …

Economic analysis of hydrogen production from steam reforming process: A literature review

L Kaiwen, Y Bin, Z Tao - … , Part B: Economics, Planning, and Policy, 2018 - Taylor & Francis
The interest in steam reforming process as an efficient method for hydrogen production has
been greatly increasing, due to its efficiency during hydrogen production and low …

Life-cycle energy consumption and greenhouse-gas emissions of hydrogen supply chains for fuel-cell vehicles in China

L Ren, S Zhou, X Ou - Energy, 2020 - Elsevier
A model is established to conduct life cycle analysis of primary-energy consumption and
greenhouse gas emissions of hydrogen supply chains for fuel-cell vehicles in China. Battery …

Technological evolution of large-scale blue hydrogen production toward the US Hydrogen Energy Earthshot

W Wu, H Zhai, E Holubnyak - Nature Communications, 2024 - nature.com
Hydrogen potentially has a crucial role in the US transition to a net-zero emissions economy.
Learning from large-scale hydrogen projects will boost technological evolution and …

[HTML][HTML] Environmental impact assessment of hydrogen production via steam methane reforming based on emissions data

HH Cho, V Strezov, TJ Evans - Energy Reports, 2022 - Elsevier
Steam methane reforming (SMR) using natural gas is the most commonly used technology
for hydrogen production. Industrial hydrogen production contributes to pollutant emissions …

Assessment of Greenhouse Gas Emissions from Hydrogen Production Processes: Turquoise Hydrogen vs. Steam Methane Reforming

GU Ingale, HM Kwon, S Jeong, D Park, W Kim, B Bang… - Energies, 2022 - mdpi.com
Hydrogen has received substantial attention because of its diverse application in the energy
sector. Steam methane reforming (SMR) dominates the current hydrogen production and is …

Electrochemical Production of Hydrogen from Hydrogen Sulfide Using Cobalt Cadmium Sulfide

K Garg, M Kumar, S Kaur… - ACS Applied Materials & …, 2023 - ACS Publications
The electrocatalytic decomposition of H2S is a promising technology for H2 production as
well as for targeting environmental pollution. But due to the lack of low-cost and efficient …

Climate change performance of hydrogen production based on life cycle assessment

GH Patel, J Havukainen, M Horttanainen, R Soukka… - Green …, 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 …

Life-cycle analysis of greenhouse gas emissions from hydrogen delivery: A cost-guided analysis

ED Frank, A Elgowainy, K Reddi, A Bafana - International journal of …, 2021 - Elsevier
The cost of hydrogen delivery for transportation accounts for most of the current H 2 selling
price; delivery also requires substantial amounts of energy. We developed harmonized …

[HTML][HTML] A review of life cycle assessment studies of maritime fuels: critical insights, gaps, and recommendations

M Roux, C Lodato, A Laurent, TF Astrup - Sustainable Production and …, 2024 - Elsevier
The shift from fossil-based to alternative fuels has been identified as a means of reducing
the maritime transportation sector's environmental footprint. However, deciding which …