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: #CCUS (clear)

Showing 781–800 of 862 papers

📚 Peer-reviewed · JournalCommunications Sustainability2026#CCUSDOI

Seaweed farms enhance alkalinity production and carbon capture

M. Fakhraee, N. Planavsky

This study demonstrates that seaweed farming enhances ocean alkalinity, promoting carbon capture and sequestration. Increased alkalinity strengthens the ocean's chemical buffering capacity, facilitating absorption of atmospheric CO2. Seawee…

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📚 Peer-reviewed · JournalFirat University Journal of Experimental and Computational Engineering2026#CCUSDOI

Capturing Carbon Dioxide from Industrial Waste Gases

Özcan Başaran, Yavuz Kirim

This study simulates CO2 capture from an industrial facility in Turkey using MDEA solution in Aspen Plus. Optimizing flow rate and tray count achieved 95% capture efficiency (72.14 t/h out of 76 t/h). The process design is cost-effective an…

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🌍 Global📚 Peer-reviewed · JournalApplied Microbiology and Biotechnology2026#CCUSDOI

CO2-driven biosurfactant synthesis by bacteria within CCUS

A. Napp, William Lautert Dutra, L. Duarte +3

This review examines microbial CO2 capture coupled with biosurfactant production within a CCUS framework. It covers metabolic pathways, synthetic biology advances, and AI integration for optimizing carbon fixation and biomanufacturing, high…

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🌍 Global📚 Peer-reviewed · JournalAsia-Pacific Journal of Chemical Engineering2026#CCUSDOI

Technobiological Pathways for High‐CO₂ Capture Using Micro‐/Macroalgae: Genetic Engineering, Process Automation, and Value‐Added Bioproducts

Sadhana Semwal, H. Joshi

This paper reviews biological CO2 utilization pathways using micro- and macroalgae, covering genetic engineering, process automation, and value-added bioproducts. It summarizes recent advances in algal biomass utilization and integrated CCU…

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📚 Peer-reviewed · JournalJournal of Materials Exploration and Findings2026#CCUSDOI

Techno-Enviro-Economic Analysis of Precipitated Calcium Carbonate Production from Carbon Dioxide in Cement Industry Flue Gas and Calcium Hydroxide

(著者不明)

This study simulates a process to capture CO2 from cement plant flue gas and react it with calcium hydroxide to produce precipitated calcium carbonate (PCC). Technical, economic, and environmental analyses show 99.5% CO2 capture efficiency,…

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📚 Peer-reviewed · JournalEnvironmental science and pollution research international2026#CCUSDOI

Physiological changes in carbon sequestration and lipid production characteristics of microalgae under high CO2 domestication

Xinqing Gao, Longfei Yuan, Hui Yin Yeong +5

This study investigates physiological changes in microalgae under high CO2 domestication, focusing on carbon sequestration and lipid production. The findings suggest potential for enhanced carbon capture and biofuel production.

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📚 Peer-reviewed · JournalApplied Sciences2026#CCUSDOI

DFT-Based Study of CO2 Adsorption Mechanism on Carbon Materials

Haoping Wan, Xinyu Wang, Fengqiang Miao +5

This study uses DFT to investigate CO2 adsorption on carbon materials, revealing that adsorption energies fall into three levels depending on bond formation (C=C, C=O, C-N). Functional groups like N and NH+ can optimize performance while ma…

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📚 Peer-reviewed · JournalEnvironmental science and pollution research international2026#CCUSDOI

Optimization of chemically activated carbon derived from malt bagasse for CO₂ adsorption: a simplex-centroid approach

Giovanna C Carlos, L. H. Crespo, Pedro H C Voloch +5

This study optimizes activated carbon from malt bagasse for CO2 adsorption using simplex-centroid design. NaOH-activated carbon achieved 2.83 mmol/g at 273 K, showing potential for sustainable CO2 capture from industrial by-products.

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🌍 Global📚 Peer-reviewed · JournalApplied and Computational Engineering2026#CCUSDOI

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.

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