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 1501–1520 of 1786 papers

Peer-reviewed🇪🇺 EuropeJournalBuildings2026#OtherDOI

Effect of Thermally Activated Construction and Demolition Waste as Partial Cement Replacement on the Physical, Mechanical, and Durability Properties of Low-Carbon Concrete

Sandra Cunha, Kubilay Kaptan, Adelino Elias Chiaqui +1

This study explores the use of thermally activated mixed construction and demolition waste (CDW) as a partial cement replacement in low-carbon concrete. Concrete mixtures with 5-35% replacement were tested for physical, mechanical, and dura…

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Peer-reviewedJournalBioresource Technology2026#OtherDOI

Anaerobic digestion of recalcitrant organics and emerging contaminants in pharmaceutical wastewater for carbon neutrality and bioresource recovery: A critical review

Xinru Niu, Tao Zhang (43681), Yao Xu +8

This critical review examines anaerobic digestion of recalcitrant organics and emerging contaminants in pharmaceutical wastewater, assessing its potential for carbon neutrality and bioresource recovery. It identifies challenges and future r…

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Peer-reviewedJournalZenodo (CERN European Organization for Nuclear Research)2026#OtherDOI

Thermally Treated Asbestos–Cement Waste as a Low-Carbon Circular Cement: Effects on the Properties of Air‑Cured Fiber Cement

Geane Carneiro, Vanderley Moacry John, Cléber Marcos Ribeiro Dias

This study evaluated the use of a low-carbon circular binder (C²BC) obtained from thermally treated asbestos-cement waste as a 25% replacement for Portland cement in fiber-cement boards. C²BC shortened setting time by 10% and increased earl…

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Peer-reviewed🌍 GlobalJournalJournal of the Australian Ceramic Society2026#OtherDOI

Microbial self-healing in low-carbon cementitious composites: mechanisms, performance, and sustainability

Nejib Ghazouani, Khaled Mohamed Elhadi, Aqeel ur Rehman

This paper reviews mechanisms of microbial self-healing in low-carbon cementitious composites and evaluates its impact on performance and sustainability. It suggests that self-healing enhances durability, thereby reducing lifecycle carbon e…

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