A review on ceramic waste-based concrete: A step toward sustainable concrete

Ceramic waste (CW) has a significant negative environmental influence on the society. However, CW may benefit the environment if it is handled carefully and recycled in concrete production. Recycling CW may lessen the demand for raw materials and waste disposal, thereby preserving natural resources...

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Main Authors: Ahmad Jawad, Alattyih Wael, Jebur Yasir Mohammed, Alqurashi Muwaffaq, Garcia-Troncoso Natividad
Format: Article
Language:English
Published: De Gruyter 2023-09-01
Series:Reviews on Advanced Materials Science
Subjects:
Online Access:https://doi.org/10.1515/rams-2023-0346
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author Ahmad Jawad
Alattyih Wael
Jebur Yasir Mohammed
Alqurashi Muwaffaq
Garcia-Troncoso Natividad
author_facet Ahmad Jawad
Alattyih Wael
Jebur Yasir Mohammed
Alqurashi Muwaffaq
Garcia-Troncoso Natividad
author_sort Ahmad Jawad
collection DOAJ
description Ceramic waste (CW) has a significant negative environmental influence on the society. However, CW may benefit the environment if it is handled carefully and recycled in concrete production. Recycling CW may lessen the demand for raw materials and waste disposal, thereby preserving natural resources and lowering greenhouse gas emissions. Numerous studies discuss the possibility of CW utilization as concrete ingredients. However, data are spread, making it difficult for the reader or user to assess the benefits and drawbacks of using CW in concrete, which limits its applications. To study the benefits and drawbacks of using CW in concrete and provide the guidelines to the consumer with relevant information, a detailed review is required. Therefore, this study is carried out to collect all relevant updated information from published articles. The major topics of this article include the general history of CW, physical and chemical features, and the influence on concrete parameters including fresh, strength, elevated temperature, and cost benefits. Results indicate that CW decreased concrete flowability and strength. However, with up to 10% substitution, the results are satisfactory, and concrete can be used for a normal-strength structure. Furthermore, the review also identifies the research gaps that need to be investigated.
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spelling doaj.art-ba378ee8df7f44b1888053c98836a6b12023-09-11T07:00:34ZengDe GruyterReviews on Advanced Materials Science1605-81272023-09-01621id. 387569510.1515/rams-2023-0346A review on ceramic waste-based concrete: A step toward sustainable concreteAhmad Jawad0Alattyih Wael1Jebur Yasir Mohammed2Alqurashi Muwaffaq3Garcia-Troncoso Natividad4Department of Civil Engineering, Swedish College of Engineering (SCET), Wah Cantt, 47040, PakistanDepartment of Civil Engineering, College of Engineering, Qassim University, Buraydah51452, Saudi ArabiaBuilding and Construction Techniques Engineering Department, Al-Mustaqbal University College, Babylon, IraqCivil Engineering Department, College of Engineering, Taif University, P.O. Box 11099, Taif 21944, Saudi ArabiaFacultad de Ingeniería en Ciencias de la Tierra (FICT), Escuela Superior Politécnica del Litoral, ESPOL, Campus Gustavo Galindo Km 30.5 Vía Perimetral, Guayaquil P.O. Box 09-01-5863, Ecuador; Center of Nanotechnology Research and Development (CIDNA), Escuela Superior Politécnica del Litoral, ESPOL, Campus Gustavo Galindo Km 30.5 Vía Perimetral, Guayaquil 090506, EcuadorCeramic waste (CW) has a significant negative environmental influence on the society. However, CW may benefit the environment if it is handled carefully and recycled in concrete production. Recycling CW may lessen the demand for raw materials and waste disposal, thereby preserving natural resources and lowering greenhouse gas emissions. Numerous studies discuss the possibility of CW utilization as concrete ingredients. However, data are spread, making it difficult for the reader or user to assess the benefits and drawbacks of using CW in concrete, which limits its applications. To study the benefits and drawbacks of using CW in concrete and provide the guidelines to the consumer with relevant information, a detailed review is required. Therefore, this study is carried out to collect all relevant updated information from published articles. The major topics of this article include the general history of CW, physical and chemical features, and the influence on concrete parameters including fresh, strength, elevated temperature, and cost benefits. Results indicate that CW decreased concrete flowability and strength. However, with up to 10% substitution, the results are satisfactory, and concrete can be used for a normal-strength structure. Furthermore, the review also identifies the research gaps that need to be investigated.https://doi.org/10.1515/rams-2023-0346ceramic wastesustainable concreteflowability and compressive strength
spellingShingle Ahmad Jawad
Alattyih Wael
Jebur Yasir Mohammed
Alqurashi Muwaffaq
Garcia-Troncoso Natividad
A review on ceramic waste-based concrete: A step toward sustainable concrete
Reviews on Advanced Materials Science
ceramic waste
sustainable concrete
flowability and compressive strength
title A review on ceramic waste-based concrete: A step toward sustainable concrete
title_full A review on ceramic waste-based concrete: A step toward sustainable concrete
title_fullStr A review on ceramic waste-based concrete: A step toward sustainable concrete
title_full_unstemmed A review on ceramic waste-based concrete: A step toward sustainable concrete
title_short A review on ceramic waste-based concrete: A step toward sustainable concrete
title_sort review on ceramic waste based concrete a step toward sustainable concrete
topic ceramic waste
sustainable concrete
flowability and compressive strength
url https://doi.org/10.1515/rams-2023-0346
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