Quantitative Modeling and Assessment of CO2 Storage in Saline Aquifers: A Case Study in Switzerland DOI Creative Commons
Thanushika Gunatilake, Alba Zappone,

Yingqi Zhang

et al.

Carbon Capture Science & Technology, Journal Year: 2025, Volume and Issue: unknown, P. 100360 - 100360

Published: Jan. 1, 2025

Language: Английский

Hydrogen energy systems: Technologies, trends, and future prospects DOI Creative Commons
Abdellatif M. Sadeq, Raad Z. Homod, Ahmed Kadhim Hussein

et al.

The Science of The Total Environment, Journal Year: 2024, Volume and Issue: 939, P. 173622 - 173622

Published: May 29, 2024

This review critically examines hydrogen energy systems, highlighting their capacity to transform the global framework and mitigate climate change. Hydrogen showcases a high density of 120 MJ/kg, providing robust alternative fossil fuels. Adoption at scale could decrease CO

Language: Английский

Citations

111

Decarbonising cement and concrete production: Strategies, challenges and pathways for sustainable development DOI Creative Commons
Salim Barbhuiya, Fragkoulis Kanavaris, Bibhuti Bhusan Das

et al.

Journal of Building Engineering, Journal Year: 2024, Volume and Issue: 86, P. 108861 - 108861

Published: Feb. 22, 2024

This paper provides a comprehensive analysis of decarbonising cement and concrete production, addressing strategies, technologies, policy considerations, case studies, economic implications, challenges future recommendations. The industry are major contributors to carbon emissions environmental degradation, making decarbonisation crucial for sustainable development. explores various including alternative clinker capture storage, improved energy efficiency, low-carbon cements circular economy approaches. Additionally, it examines technologies such as supplementary cementitious materials, carbonation, mixes, recycling novel manufacturing processes. importance interventions, collaboration standards certifications is emphasised. Case studies best practices highlight successful initiatives, while implications market opportunities considered. also identifies challenges, technological limitations, financing constraints, resistance change the need awareness education. Finally, recommendations focus on pathways deep decarbonisation, measures, research priorities fostering collaboration. review serves valuable resource researchers, policymakers professionals striving achieve production.

Language: Английский

Citations

99

New insights into the green cement composites with low carbon footprint: The role of biochar as cement additive/alternative DOI

Jiehuizi Wen,

Bangda Wang, Zhongde Dai

et al.

Resources Conservation and Recycling, Journal Year: 2023, Volume and Issue: 197, P. 107081 - 107081

Published: June 8, 2023

Language: Английский

Citations

51

Oil palm biomass in Indonesia: Thermochemical upgrading and its utilization DOI Creative Commons

Rakhmawati Nabila,

Wahyu Hidayat, Agus Haryanto

et al.

Renewable and Sustainable Energy Reviews, Journal Year: 2023, Volume and Issue: 176, P. 113193 - 113193

Published: Jan. 30, 2023

Indonesia is the world's largest palm oil producing country. The industry (plantation and milling) generates large amounts of solid waste in form empty fruit bunches (EFB), kernel shells (PKS), mesocarp fiber (MF), fronds (OPF), trunks (OPT). This leftover waste, collectively termed biomass (OPB), causes severe environmental pollution, thereby threatening sustainability industry. Upgrading OPB by thermochemical processes (torrefaction pyrolysis) has attracted significant interest as a means recycling residues mitigating damage. study reviews previous research on environment-friendly utilization Indonesia. First, general information presented (availability, properties, governmental policy). Second, torrefaction for production upgraded fuel summarized. Third, pyrolysis to produce biochar reviewed use soil amendment carbon storage. market perspective life cycle assessment (LCA) thermally treated are discussed, targeting generation electricity (OPB torrefaction) agricultural enhancement biochar). expected contribute economic success also net-zero 2060

Language: Английский

Citations

50

Roadmap to a net-zero carbon cement sector: Strategies, innovations and policy imperatives DOI Creative Commons
Salim Barbhuiya, Bibhuti Bhusan Das, Dibyendu Adak

et al.

Journal of Environmental Management, Journal Year: 2024, Volume and Issue: 359, P. 121052 - 121052

Published: May 1, 2024

The cement industry plays a significant role in global carbon emissions, underscoring the urgent need for measures to transition it toward net-zero footprint. This paper presents detailed plan this end, examining current state of sector, its output, and imperative emission reduction. It delves into various low-CO2 technologies emerging innovations such as alkali-activated cements, calcium looping, electrification, bio-inspired materials. Economic policy factors, including cost assessments governmental regulations, are considered alongside challenges potential solutions. Concluding with future prospects, offers recommendations policymakers, players, researchers, highlighting roadmap's critical achieving carbon-neutral sector.

Language: Английский

Citations

35

A Review: Construction and Demolition Waste as a Novel Source for CO2 Reduction in Portland Cement Production for Concrete DOI Open Access
Kubilay Kaptan, Sandra Cunha, J. L. Barroso de Aguiar

et al.

Sustainability, Journal Year: 2024, Volume and Issue: 16(2), P. 585 - 585

Published: Jan. 9, 2024

There is an increasing global recognition of the need for environmental sustainability in mitigating adverse impacts cement production. Despite implementation various carbon dioxide (CO2) mitigation strategies industry, such as waste heat recovery, use alternative raw materials and fuels, energy efficiency improvements, capture storage, overall emissions have still increased due to higher production levels. The resolution this matter can be efficiently achieved by substitution traditional with material, calcined clay (CC), construction demolition (CDW), which a significant impact on areas sustainable development, including environmental, economic, social considerations. primary objectives employing CDW Portland are twofold: firstly, mitigate release CO2 into atmosphere, it contributor pollution climate change; secondly, optimize utilization materials, thereby addressing challenges associated their disposal. purpose work present thorough examination existing body literature pertaining partial replacement analyze resulting emissions.

Language: Английский

Citations

34

Carbon and air pollutant emissions forecast of China's cement industry from 2021 to 2035 DOI
Xiao Liu, Yang Li, Jingwei Du

et al.

Resources Conservation and Recycling, Journal Year: 2024, Volume and Issue: 204, P. 107498 - 107498

Published: Feb. 27, 2024

Language: Английский

Citations

29

A Global Assessment Tool for Cement Plants Improvement Measures for the Reduction of CO2 Emissions DOI Creative Commons

Esraa A. Khalil,

Mohamed Nagib Abou‐Zeid

Results in Engineering, Journal Year: 2025, Volume and Issue: unknown, P. 104767 - 104767

Published: March 1, 2025

Language: Английский

Citations

3

Global carbon recoverability experiences from the cement industry DOI Creative Commons
Mugahed Amran, Natt Makul, Роман Федюк

et al.

Case Studies in Construction Materials, Journal Year: 2022, Volume and Issue: 17, P. e01439 - e01439

Published: Aug. 29, 2022

Language: Английский

Citations

68

Is net-zero feasible: Systematic review of cement and concrete decarbonization technologies DOI
Moncef L. Nehdi, Afshin Marani, Lei Zhang

et al.

Renewable and Sustainable Energy Reviews, Journal Year: 2023, Volume and Issue: 191, P. 114169 - 114169

Published: Dec. 12, 2023

Language: Английский

Citations

44