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.
Peer-reviewedJournalSeparation and Purification Technology2026#CCUSDOI
Heat pump assisted absorption carbon capture with mechanical vapor recompression for biogas purification
Y.X. Zhu, J.K. Wu, Y. Huang +3
This paper proposes a heat pump assisted absorption carbon capture system with mechanical vapor recompression for biogas purification. The combination improves energy efficiency and reduces costs, advancing CCUS technology.
Peer-reviewed🌍 GlobalJournalCarbon Capture Science & Technology2026#CCUSDOI
Deep dehumidification in cryogenic carbon capture systems: a comprehensive review and critical assessment
Eduardo Nobre Rodrigues, Nuno Baía Saraiva, José B. Ribeiro +2
This review provides a comprehensive overview and critical assessment of deep dehumidification techniques in cryogenic carbon capture systems. It identifies key challenges and research gaps, offering insights for future development.
Peer-reviewedJournalEnvironmental Innovation and Societal Transitions2026#CCUSDOI
How do multi-purpose technological innovation systems expand? Insights from carbon capture technology
Jørgen Finstad, Allan Dahl Andersen
This paper analyzes how multi-purpose technological innovation systems expand, using carbon capture technology as a case study. It focuses on the interaction between policy and industry to reveal drivers of system expansion, offering insigh…
Peer-reviewedJournalSeparation and Purification Technology2026#CCUSDOI
Hierarchical wood–metal–organic framework composites with tunable multiscale porosity for carbon capture
Yingying Li, Weichen Shi, Caoxiong Zhuang +7
This study develops novel composites combining wood and metal-organic frameworks (MOFs) with hierarchical porosity for optimized CO2 adsorption. The tunable multiscale structure enables efficient carbon capture, offering a renewable and cos…
Peer-reviewedJournalSeparation and Purification Technology2026#CCUSDOI
CESAR1 Unlocked: A validated rate-based model enabling next-generation carbon capture design
Antoine Verhaeghe, Lionel Dubois, Guy De Weireld +1
This paper presents a validated rate-based model for the CESAR1 solvent carbon capture process, enabling more efficient design of next-generation carbon capture systems.
Peer-reviewedJournalJournal of CO2 Utilization2026#CCUSDOI
Carbon capture opportunities and challenges for CO₂ utilization in next generation e-fuels
Anwar Ahmad, Abdullah A. Almayeef, Mohammed Alsuwaylih +2
This paper reviews the opportunities and technical challenges of carbon capture and utilization for producing next-generation e-fuels. It focuses on the intersection of carbon recycling and synthetic fuels, discussing the potential and limi…
Peer-reviewedJournalOpen Ceramics2026#CCUSDOI
Performance-driven optimization of 3D-printed zeolite-based monoliths for carbon capture
Enrica Luzzi, Riccardo Rea, Enzo Mangano +3
This study proposes an optimization method for 3D-printed zeolite monoliths to enhance CO2 capture performance, balancing efficiency and durability, with design guidelines for practical application.
Peer-reviewedJournalGlobal Environmental Change2026#CCUSDOI
Machine learning reveals insufficient carbon capture storage deployment to meet climate goals
Xiyu Li, Yixin Sun, Yun Tang +2
Using machine learning, this study reveals that current carbon capture and storage (CCS) deployment rates are insufficient to meet global climate goals, indicating a need for rapid scaling.
Preprint🇪🇺 Europe2026#CCUSDOI
HYDROFOBIC MODIFICATIONS OF CARBONIC ANHYDRASE DISTINCTIVELY IMPROVE PERFORMANCE IN BIOCATALYTIC CARBON CAPTURE
Ulrik Brix Madsen, Agnese Zaghini, Silke Flindt Badino +4
This study demonstrates that hydrophobic modifications of carbonic anhydrase (CA) dramatically improve its performance in CO2 capture, achieving over two orders of magnitude increase in specific activity. The modifications enhance interfaci…
Peer-reviewedJournalJournal of CO2 Utilization2026#CCUSDOI
System-level thermal integration and electrification of carbon capture and methanol synthesis
Ruowei Yuan, Kewei Xu, Zhenyu Du +3
This paper proposes a system-level approach to thermally integrate and electrify carbon capture and methanol synthesis processes, aiming to maximize energy efficiency and CO2 reduction. It has potential contributions to industrial decarboni…
Peer-reviewedJournalFuel2026#CCUSDOI
Innovative approaches to carbon capture using fluidized bed reactors: A brief review
Yuanqiang Duan, Lin Li, Dennis Lu +4
This brief review discusses innovative carbon capture approaches using fluidized bed reactors, covering sorbent materials, process optimization, and future research directions.
Peer-reviewedJournalExpert Systems with Applications2026#Carbon PricingDOI
Economically-aware decision-making framework for integrated electricity-gas systems under carbon pricing uncertainty and CCUS investment trade-offs
Yuanbang Li, Rong Peng, Sibang Liu +2
This paper proposes an economically-aware decision-making framework for integrated electricity-gas systems under carbon pricing uncertainty and CCUS investment trade-offs. The framework aims to support investment decisions in energy transit…
Peer-reviewedJournalEnergy Economics2026#CCUSDOI
Kickstarting Carbon Capture and Storage adoption: Tailoring subsidies to emitters’ needs
Adrien Nicolle, David Lowing, Diego Manuel Cebreros Saettone
This paper analyzes subsidy design for CCS adoption from emitters' perspective, suggesting that tailored subsidies (based on cost structure and risk preferences) are more effective than uniform schemes. Practical implications for policymake…
Peer-reviewedJournalPowder Technology2026#CCUSDOI
Investigation of circulating fluidized bed carbon capture using lithium-based sorbents
X.H. Chen, Y.X. Zhang, X.X. Hu +5
This paper investigates circulating fluidized bed carbon capture technology using lithium-based sorbents, exploring performance and mechanisms to enhance CO2 capture efficiency.
Peer-reviewedJournalSeparation and Purification Technology2026#CCUSDOI
Thermodynamic analysis of a novel hydraulic piston-based carbon capture system
Longxiang Chen, Die Wei, Hailin Gu +3
This paper presents a thermodynamic analysis of a novel hydraulic piston-based carbon capture system, evaluating its efficiency and feasibility. It suggests potential for reduced energy consumption compared to conventional amine scrubbing, …
Peer-reviewedJournalJournal of Climate Change Research2026#CCUSDOI
Policy research to formulate project methodologies for carbon credits with direct air carbon capture & utilization (DACCU) technologies
Sangjin Oh, Chaewoon Oh, Mina Lee +1
This policy research aims to formulate project methodologies for carbon credits generated by Direct Air Carbon Capture and Utilization (DACCU) technologies. It addresses the lack of established methodologies for this emerging carbon removal…
Peer-reviewedJournalSeparation and Purification Technology2026#CCUSDOI
COF-based IL/bacterial cellulose composite membranes for carbon capture
Han Zhao, Suhui Liu, Tong Li +7
This study presents novel COF-based IL/bacterial cellulose composite membranes for carbon capture, evaluating their structure and CO2 separation performance, showing potential for efficient carbon capture.
Peer-reviewedJournalAlgal Research2026#CCUSDOI
Marine algae growth and carbon capture augmentation by antioxidant nanozymes
Supreetha Sivaraj, Hye-In Kim, Su-Ji Jeon +6
This study proposes using antioxidant nanozymes to enhance marine algae growth and improve carbon capture capacity, suggesting a new nature-based carbon removal approach.
Peer-reviewedJournalRenewable and Sustainable Energy Transition2026#CCUSDOI
Reduction of magnetite for carbon capture in chemical-looping combustion
Wei-Hsin Chen, Aristotle T. Ubando, John Patrick Mercado
This study focuses on the reduction of magnetite in chemical-looping combustion for carbon capture. It analyzes reaction mechanisms and efficiency, potentially contributing to the advancement of CCUS technology.
Peer-reviewedJournalBiomass and Bioenergy2026#CCUSDOI
Biomass nanoarchitectonics of hierarchical porous carbon with ultrahigh surface area for direct air carbon capture and supercapacitor
Zitong Zhuang, Zhiqiang Wang, Yangbo Xue +3
This study develops hierarchical porous carbon from biomass for direct air carbon capture (DAC) and supercapacitors. The ultrahigh surface area suggests potential for high CO2 adsorption capacity and electrochemical performance.