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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Showing 101–120 of 677 papers

🌍 Global📚 Peer-reviewed · JournalJournal of Hydrology2026#OtherDOI

Modeling the impact of nature-based solutions on dry season water availability: exploration of spatio-temporal configurations

Garima Mandavya, Sadie McEvoy, Tolulope Odunola +5

This study develops a hydrologic modeling framework to evaluate five Nature-based Solution (NbS) pathways for enhancing dry season water availability, combining alien vegetation removal, native grassland/forest restoration, and soil infiltr…

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🇪🇺 Europe📚 Peer-reviewed · JournalTechnical Sciences2026#OtherDOI

Verification of the symbiosis of artificial intelligence and nature-based solutions as a development premise in the shipbuilding industry

Halina Tańska, Jolanta Sala, Bartosz Janiszewski

This paper examines the dilemmas and research outcomes for a project combining nature-based technologies and AI for efficient water management in shipyards, focusing on the Gdansk shipbuilding industry. It emphasizes holistic identification…

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🇺🇸 USA📚 Peer-reviewed · JournalChemical Engineering Journal Green and Sustainable2026#OtherDOI

Algae-supplemented anaerobic biofilters enable nutrient recovery from agricultural runoff and atmospheric carbon capture

Otuo-Akyompong Boakye, Ebun Maria Omole-Ohonsi, Nagagopi Pesarlanka +2

This study develops algae-supplemented anaerobic biofilters to remove and recover nutrients from agricultural runoff while capturing atmospheric CO2. Denitrification removes nitrate, algae recover phosphate and nitrogen, and algae sequester…

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📚 Peer-reviewed · JournalJournal of environmental chemical engineering2026#OtherDOI

Corrigendum to “High self-enrichment of anammox bacteria empowers thiosulfate-driven partial denitrification coupling anammox for low-carbon nitrogen removal” [J. Environ. Chem. Eng. 13 (2025) 118718]

Luyao Wang, Qi Zhao, Ruoxi Chen +3

This corrigendum corrects specific errors in the original paper on thiosulfate-driven partial denitrification coupling anammox for low-carbon nitrogen removal. The original research highlighted high self-enrichment of anammox bacteria in th…

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🇺🇸 USA📚 Peer-reviewed · JournalResources Conservation and Recycling2026#OtherDOI

Ambient-pressure chemical recycling of thermoset carbon fiber-reinforced polymers via low-temperature solvolysis: Techno-economic and life-cycle assessment

Cassandra M. Reese, Areesa A. Trevino, Jose L. Ramos +5

This study evaluates ambient-pressure low-temperature solvolysis for chemical recycling of carbon fiber-reinforced polymers. Techno-economic and life-cycle assessment suggests potential for cost-effective and environmentally friendly recycl…

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📚 Peer-reviewed · JournalJournal of environmental chemical engineering2026#OtherDOI

Dual-Scale Roughness and Low Surface Energy Synergy: MgAl-LDH/Fluorosilane Modified Carbon Cloth for Efficient Oil-Water Separation

Mengzhen Du, Tao Niu, Ximin Wang +2

This paper reports an efficient oil-water separation material using MgAl layered double hydroxide and fluorosilane modified carbon cloth. The synergy of dual-scale roughness and low surface energy achieves high separation efficiency and dur…

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🌍 Global📚 Peer-reviewed · JournalIranian Journal of Science and Technology Transactions of Civil Engineering2026#OtherDOI

Quantification of Bio-Mediated Crack Healing in LC₃ Low-Carbon Concrete Using Diffuse Ultrasound and S-Transform Analysis

Mahakavi Palanichamy, Azween Bin Abdullah, A. Daniel

This paper proposes a method to quantify bio-mediated crack healing in LC₃ low-carbon concrete using diffuse ultrasound and S-transform analysis, contributing to durability assessment of sustainable concrete.

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