GX Research Hub · English

GX & Decarbonization Research

This page provides an English interface to the gxceed GX paper corpus. The corpus aggregates papers from 14 contributing 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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Showing 961–980 of 31536 papers

Peer-reviewedJournalBoletim de Conjuntura (BOCA)2026#Energy TransitionDOI

ELECTRIC-FURNACE PRODUCTION OF ELEMENTAL PHOSPHORUS AND THERMAL PHOSPHORIC ACID: FUNDAMENTALS, THERMODYNAMICS, INDUSTRIAL PRACTICE, DECARBONIZATION, AND FUTURE ROUTES—A CRITICAL REVIEW

Antonio Clareti Pereira

Electric-furnace elemental phosphorus and thermal phosphoric acid production is among the most energy- and carbon-intensive chemical-metallurgical routes, yet remains strategically relevant where high-purity P₄ is required. This critical re…

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Peer-reviewedJournalInternational Journal of Technology and Applied Science2026#Energy EfficiencyDOI

Quantifying the Carbon Mitigation Potential of Waste Heat Recovery Systems (WHR) in Sponge Iron Plant: A study of Decarbonisation

Avantika Saha, Rashmi Mishra, Sapan Saha

Coal-based rotary kiln sponge iron plants reject 30-40% of thermal input as 800-1000°C flue gas. Using CDM baseline methodology ACM0012, this study models mass-and-energy balance and carbon accounting to show that WHR-based captive power di…

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JournalDeep Decarbonization of Modern Energy Networks for Climate–Energy–Sustainability Nexus2026#CCUSDOI

Innovative Carbon Capture Cycles in Zero‐emission Resilient Power Generation for Sustainable Deep Decarbonization of Modern Energy Networks

Elahe Soleymani, Hadi Ghaebi

This paper examines innovative carbon capture cycles within zero-emission, resilient power generation systems, addressing deep decarbonization of modern energy networks. It positions CCUS integration as a pathway toward sustainable power-se…

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JournalDeep Decarbonization of Modern Energy Networks for Climate–Energy–Sustainability Nexus2026#Energy TransitionDOI

Intelligent Cyber‐physical Systems in Deep Decarbonization of Modern Energy Networks

Reza Sepehrzad, Hossein Hosseinalibeiki, Zahra Yousefi +2

This paper examines intelligent cyber-physical systems (CPS) as enablers of deep decarbonization in modern energy networks. It argues that integrating AI, sensing, and control supports grid stability and optimization under high renewable pe…

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JournalSustainable Internal Combustion Engines - Technologies, Fuels and Emission Control [Working Title]2026#Energy TransitionDOI

Renewable Oxygenated Fuels for Diesel Engine Decarbonization: Combustion Mechanisms, Performance, Emissions and Practical Challenges

Lilian Lefol Nani Guarieiro, Geise Camila de Araujo Ribeiro, Thiago Barros Murari +8

This chapter reviews renewable oxygenated fuels—ethanol, biodiesel, and DME—as pathways to decarbonize compression ignition engines. It compares how molecular structure and physicochemical properties affect ignition delay, heat release, the…

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Peer-reviewedJournalCleaner Energy Systems2026#HydrogenDOI

Mapping the scientific landscape of green hydrogen for decarbonization: A bibliometric and thematic analysis

Santiago Felipe Romero-Paredes, Carlos Daniel Campoverde-Pillajo, Dennis Alfredo Peralta-Gamboa

This paper maps the research landscape of green hydrogen for decarbonization using bibliometric and thematic analysis. It visualizes publication trends, dominant themes, and geographic distribution, offering a bird's-eye view of the field. …

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Peer-reviewedCNJournalHuagong Jinzhan Chemical Industry and Engineering Progress2025#CCUSDOI

Optimization and conceptual design of carbon source/carbon sink supply chain planning: CCUS-enhanced oil recovery technology application in Dongying area

Tian P.

This study presents an optimization and conceptual design of a carbon source/sink supply chain combining CCUS with enhanced oil recovery (EOR) in the Dongying area of China. It examines network design for CO2 capture, transport, and utiliza…

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Peer-reviewedConferenceProceedings of the 2022 3rd International Conference on Intelligent Computing Instrumentation and Control Technologies Computational Intelligence for Smart Systems Icicict 20222022#CCUSDOI

Carbon Capture, Utilization and Storage (CCUS) - The Energy source of the future

Glan Devadhas G.

This appears to be a piece framing CCUS as a future energy source, but no abstract is available, so its specific contribution and findings cannot be verified. CCUS is a key decarbonization technology with strong policy momentum in Japan and…

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