gxceed
GX Research Hub · English

GX & Decarbonization Research

This page provides an English interface to the gxceed GX paper corpus. The corpus aggregates papers from 13 open scholarly metadata sources and uses AI-assisted classification to identify signals related to measurement, policy narratives, outcomes, implementation, industrial adoption, and verification.

The goal is not only to discover papers, but to observe how GX research is distributed across research substance, implementation narratives, external expectations, implementation substance, and judgment formation.

Summaries are AI-assisted. Always refer to the original paper for authoritative conclusions.

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Topic: #Hydrogen (clear)

Showing 241–260 of 573 papers

📚 Peer-reviewed · JournalCommunications Earth and Environment2022#HydrogenDOI

Climate benefit of a future hydrogen economy

Hauglustaine D.

This paper assesses the net climate benefit of a future hydrogen economy, considering production pathways and leakage effects. It highlights the need for policy support for green hydrogen to maximize decarbonization.

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📚 Peer-reviewed · JournalEnergy Nexus2022#HydrogenDOI

The hydrogen economy - Where is the water?

Woods P.

The hydrogen economy requires vast amounts of water, especially for electrolysis. This paper highlights water resource constraints as a critical challenge for scaling green hydrogen, noting that water scarcity could become a severe issue in…

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🌍 Global📚 Peer-reviewed · JournalScientific Reports2026#HydrogenDOI

Techno-economic benchmarking of green hydrogen production using fixed and tracking PV systems: a PVsyst–MATLAB integrated analysis

Ahmad Shah Irshad, Ahmadullah Hilali, Ahmad Bilal Ahmadullah +2

This study compares fixed-tilt and dual-axis tracking photovoltaic (PV) systems for powering hydrogen electrolyzers. The tracking system produces 15,300 kWh annually (36% higher) and achieves lower levelized cost of hydrogen ($4.37/kg vs $5…

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🌍 Global📚 Peer-reviewed · JournalPeer Beyond Graduate Research Conference2026#HydrogenDOI

<b>Life Cycle Assessment of Hydrogen</b> <b>Production Pathways Across Canada: Evaluating Methane Pyrolysis</b> <b>as a Transitional Low-Carbon </b><b>Solution</b>

Nika Rezaei, Sylvia Sleep

This study conducts a cradle-to-gate LCA of hydrogen production pathways in Canada, comparing methane pyrolysis, electrolysis, and SMR-CCS. Methane pyrolysis produces solid carbon instead of CO2, enabling potential revenue streams, but requ…

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🌍 Global📚 Peer-reviewed · JournalMetals2026#HydrogenDOI

Numerical Modeling of Oxide Scale Formation on Low-Carbon Steel Under Reheating Furnace Conditions Using Hydrogen and Natural Gas Air–Fuel and Oxy-Fuel Mixtures

Mario Herrera‐Ortega, Armin K. Silaen, Nicholas Walla +9

This paper presents a numerical model integrating CFD and oxidation kinetics to predict oxide scale formation on low-carbon steel under hydrogen and natural gas combustion. Validated against experiments, the model achieves ~10% average devi…

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📚 Peer-reviewed · JournalRevista Kawsaypacha Sociedad y Medio Ambiente2026#HydrogenDOI

Social Perception of Green Hydrogen Production in Patagonia, Argentina

Rosaura Etcheguia, M. J. Pascualone

This study surveys social perceptions of green hydrogen production via wind-powered electrolysis in Argentine Patagonia. Results from 134 respondents indicate strong awareness and positive views, with emphasis on local economic benefits and…

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