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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Topic: #Energy Transition (clear)

Showing 1101–1120 of 5895 papers

Peer-reviewedConferenceAnnual Conference of the International Group for Lean Construction Iglc2024#Energy TransitionDOI

NET-ZERO & DIGITALISATION IN OFF-SITE CONSTRUCTION

Onyenokporo N.

This paper explores the intersection of net-zero targets and digitalisation in off-site construction, focusing on potential for process efficiency and carbon reduction.

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Peer-reviewed🌍 GlobalJournalEnergy and Climate Change2024#Energy TransitionDOI

Equity implications of net-zero emissions: A multi-model analysis of energy expenditures across income classes under economy-wide deep decarbonization policies

Bistline J.

This paper uses multiple models to analyze the impact of economy-wide deep decarbonization policies on energy expenditures across income classes, finding that lower-income households may bear a disproportionate burden. It emphasizes the imp…

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Peer-reviewedJournalInternational Journal for Research in Applied Science and Engineering Technology2026#Energy TransitionDOI

Effect of Alkali Activators on Mechanical and Durability Properties of Fly Ash based Geopolymer Concrete

Abhishek Vijay Jadhav, V. Bogar

This study evaluates fly ash-based geopolymer concrete (GPC) as an alternative to ordinary Portland cement (OPC), examining the effect of NaOH and Na2SiO3 ratios on strength and durability. Heat curing at 80°C significantly improved early-a…

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Peer-reviewedJournalProceedings of the Institution of Civil Engineers : Engineering Sustainability2026#Energy TransitionDOI

Life cycle assessment of RCC bridge for environmental impact evaluation: a case study

F. Arif, Areeba Khan, Asad-ur-Rehman Khan

This study conducts an LCA of an RCC bridge in urban Karachi following ISO 14040, quantifying total life-cycle CO2 emissions at about 11.68 million kg CO2-eq. Ready-mix concrete and reinforcement steel are the main emission sources. The pap…

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Peer-reviewedJournalJournal of energy and power technology2026#Energy TransitionDOI

Battery-Less Off-Grid Renewable Microgrid: A Review of Storage Alternatives and PV-WT-CSP Integration with Green Hydrogen

Ovis D. Irefu, Godslove I. Ebiega, Terdoo M. Dugeri +1

This review addresses battery storage challenges in off-grid renewable systems, comparing six alternatives: supercapacitors, flywheels, CAES, pumped hydro, hydrogen storage, and molten salt TES. Hybrid configurations, especially molten salt…

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Conference2026 5th International Conference on Energy and Electrical Power Systems (ICEEPS)2026#Energy TransitionDOI

Bi-level Low-Carbon Optimal Scheduling Model of Multi-Energy Microgrids Based on Multi-Time Scale Rolling Optimization

Yi-Heng Qin

This paper proposes a bi-level low-carbon optimal scheduling model for multi-energy microgrids, using multi-time scale rolling optimization to integrate renewables and reduce costs. It contributes to energy transition and efficient grid ope…

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Peer-reviewed🌍 GlobalJournalSustainability2026#Energy TransitionDOI

Onboard Comparison of HFO and LNG Emissions in a High-Pressure Dual-Fuel Marine Engine at 50% MCR: Implications for Sustainable Shipping

Ewelina Orysiak, Piotr Rozner, Kamila Staszczak

This study compares HFO and LNG emissions from a real vessel's high-pressure dual-fuel engine (MAN B&W 6G50ME-C9.5-GI) at 50% MCR. LNG reduces CO2 by 27.0%, NOx by 20.7%, CO by 18.2%, and PM by ~69% (uncertain). Methane slip is ~0.6 g/kWh, …

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