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Chemical & Process Engineering

Reactions, separations, and the molecules that carry decarbonization.

30 papers from your field · Snapshot from gxceed corpus on 2026-08-24

Why this field matters in GX

Chemical engineers sit at the heart of the most contested GX scenarios: hydrogen production routes, ammonia as a hydrogen carrier, CCS solvent chemistry, methanol as a green feedstock. PhD-level analysis of catalyst stability, separation thermodynamics, and reactor design directly bounds what is and is not deployable at scale.

GX implementation map

Top results from your field, clustered by GX implementation theme. Each cluster shows where doctoral methods from your field actually meet decarbonization work.

Hydrogen

26 papers in this cluster
Hydrogenpeer-reviewedrelevance 58%2026

Water Consumption in Hydrogen Production Through Electrolysis: Overview, State‐of‐the‐Art, and Future Trends

Antonio Santos Sánchez, Gleizer Vitor Nonato, André Luís Silva, …

This review examines water consumption in green hydrogen production via electrolysis, highlighting that PEM electrolysis consumes 17.5 L water per kg H2, with 49% used for cooling. It notes that most large projects rely on desalinated seawater, but reclaimed wastewater is…

via WIREs Energy and Environment

CCUS

2 papers in this cluster
CCUSpreprintrelevance 56%2026

Electrochemical Carbon Capture and Conversion: A Future Green Approach

Dr. Sarita Chaudhary, Dr. Mala Mathur , Dr. Komal Arora , Dr. Santosh Kumar Agrawal, Dr. Abhishek Gehlot

This paper reviews electrochemical carbon capture and conversion technologies, covering electrode catalysts, electrolyzer design, and process integration. It highlights the potential for producing green fuels and chemicals using renewable electricity to achieve negative…

via Zenodo (CERN European Organization for Nuclear Research)

CCUSpeer-reviewedrelevance 55%2026

CO Green Hydrogenation to Methanol and Process Design

Hongbin Huang

This paper systematically reviews catalytic systems and process design for CO2 hydrogenation to methanol. Efficient catalysts and low-cost green hydrogen are keys to industrial application, offering a promising CCUS pathway.

via Applied and Computational Engineering

Energy transition

2 papers in this cluster
Energy transitionpeer-reviewedrelevance 54%2026

Electrochemistry for Sustainable and Low‐Carbon Technologies: Energy Conversion, Carbon Neutrality, and Green Chemical Manufacturing

Xinyue Wang, Yuhui Sun, Yi Lu, …

This review synthesizes progress in electrochemical technologies for deep decarbonization, covering water electrolysis, fuel cells, batteries, and CO2 reduction. It emphasizes catalyst design, interfacial control, and reactor integration to achieve practical performance and cost…

via Chemistry - An Asian Journal

Energy transitionpeer-reviewedrelevance 54%2026

Comparative thermodynamic assessment of renewable production pathways efficiency for methane, methanol and ammonia fuels

Panagiotis Karvounis, Γεράσιμος Θεοτοκάτος, Osman Turan

This paper presents a thermodynamic comparison of renewable production pathways for methane, methanol, and ammonia as shipping fuels. The second-law efficiencies are 29.2%, 32.7%, and 30.9%, with electrolysis as the main source of irreversibility. The findings support system…

via Strathprints: The University of Strathclyde institutional repository (University of Strathclyde)

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