Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review

Abstract The escalating demand for construction materials and the imperative of waste reduction have spurred interest in utilizing recycled concrete from demolition waste as a sustainable alternative. This comprehensive review delves into the utilization of recycled concrete from demolition waste as...

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Main Authors: Arnab Mandal, Amit Shiuly
Format: Article
Language:English
Published: Springer 2025-02-01
Series:Discover Civil Engineering
Subjects:
Online Access:https://doi.org/10.1007/s44290-025-00185-0
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author Arnab Mandal
Amit Shiuly
author_facet Arnab Mandal
Amit Shiuly
author_sort Arnab Mandal
collection DOAJ
description Abstract The escalating demand for construction materials and the imperative of waste reduction have spurred interest in utilizing recycled concrete from demolition waste as a sustainable alternative. This comprehensive review delves into the utilization of recycled concrete from demolition waste as a sustainable alternative in construction practices, addressing the escalating demand for construction materials and the imperative of waste reduction. It explores the technological advancements, environmental benefits, and economic considerations associated with recycled concrete, examining methodologies for recycling aggregates and evaluating their physical, chemical, and durability properties in comparison to traditional concrete. Additionally, the review discusses the role of recycled concrete in advancing sustainable development goals, highlighting current challenges and proposing strategies for widespread adoption. Future research directions are outlined, emphasizing the need for effective pre-processing treatments, exploration of synergistic effects of multiple recycled aggregates, development of proper classification systems, and investigation of applications in Geo-polymer concrete. The review concludes with insights into the mechanical properties of recycled concrete and the influence of pre-processing techniques on recycled fine aggregates, offering valuable guidance for researchers, practitioners, policymakers, and stakeholders invested in the sustainable future of the construction industry.
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spelling doaj-art-55d1e26a01ec49feb0ac5a8eb25fa8e52025-08-20T02:59:29ZengSpringerDiscover Civil Engineering2948-15462025-02-012112910.1007/s44290-025-00185-0Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a reviewArnab Mandal0Amit Shiuly1Civil Engineering Department, Jadavpur UniversityCivil Engineering Department, Jadavpur UniversityAbstract The escalating demand for construction materials and the imperative of waste reduction have spurred interest in utilizing recycled concrete from demolition waste as a sustainable alternative. This comprehensive review delves into the utilization of recycled concrete from demolition waste as a sustainable alternative in construction practices, addressing the escalating demand for construction materials and the imperative of waste reduction. It explores the technological advancements, environmental benefits, and economic considerations associated with recycled concrete, examining methodologies for recycling aggregates and evaluating their physical, chemical, and durability properties in comparison to traditional concrete. Additionally, the review discusses the role of recycled concrete in advancing sustainable development goals, highlighting current challenges and proposing strategies for widespread adoption. Future research directions are outlined, emphasizing the need for effective pre-processing treatments, exploration of synergistic effects of multiple recycled aggregates, development of proper classification systems, and investigation of applications in Geo-polymer concrete. The review concludes with insights into the mechanical properties of recycled concrete and the influence of pre-processing techniques on recycled fine aggregates, offering valuable guidance for researchers, practitioners, policymakers, and stakeholders invested in the sustainable future of the construction industry.https://doi.org/10.1007/s44290-025-00185-0Recycled concreteDemolition wastePre-processing treatmentsMechanical propertiesSustainable construction
spellingShingle Arnab Mandal
Amit Shiuly
Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
Discover Civil Engineering
Recycled concrete
Demolition waste
Pre-processing treatments
Mechanical properties
Sustainable construction
title Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
title_full Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
title_fullStr Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
title_full_unstemmed Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
title_short Exploring mechanical characteristics of recycled concrete aggregates from demolition waste: advancements, challenges, and future directions for sustainable construction: a review
title_sort exploring mechanical characteristics of recycled concrete aggregates from demolition waste advancements challenges and future directions for sustainable construction a review
topic Recycled concrete
Demolition waste
Pre-processing treatments
Mechanical properties
Sustainable construction
url https://doi.org/10.1007/s44290-025-00185-0
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AT amitshiuly exploringmechanicalcharacteristicsofrecycledconcreteaggregatesfromdemolitionwasteadvancementschallengesandfuturedirectionsforsustainableconstructionareview