Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers

Granite stone is highly demanded by construction sector. In the processing stage, great amounts of waste powder are produced that can be used as cement replacement in concrete production. Reduced workability is the first problem of this replacement and it can be mitigated by using superplasticizers...

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Main Authors: Elyas Asadi Shamsabadi, Mansour Ghalehnovi, Jorge de Brito, Ali Khodabakhshian
Format: Article
Language:English
Published: MDPI AG 2018-10-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/8/10/1808
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spelling doaj-d937178d46c24e929281e72aed36770a2020-11-24T21:18:01ZengMDPI AGApplied Sciences2076-34172018-10-01810180810.3390/app8101808app8101808Performance of Concrete with Waste Granite Powder: The Effect of SuperplasticizersElyas Asadi Shamsabadi0Mansour Ghalehnovi1Jorge de Brito2Ali Khodabakhshian3Department of Civil Engineering, Ferdowsi University of Mashhad, Mashhad 9177948974, IranDepartment of Civil Engineering, Ferdowsi University of Mashhad, Mashhad 9177948974, IranCERIS-ICIST, Department of Civil Engineering, Architecture and Georresources, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisbon, PortugalDepartment of Civil Engineering, Ferdowsi University of Mashhad, Mashhad 9177948974, IranGranite stone is highly demanded by construction sector. In the processing stage, great amounts of waste powder are produced that can be used as cement replacement in concrete production. Reduced workability is the first problem of this replacement and it can be mitigated by using superplasticizers (SP). This study was carried out to limit the disadvantages related to waste granite powder (WGP) use through the use of SP. For this purpose, 19 concrete mixes containing various types of SP with different contents and WGP as cement replacement were appraised. Fresh concrete density, splitting tensile strength, electrical resistivity, compressive strength and resistance to sulphate attack tests were conducted. The mixes were assessed based on their environmental impact, economic, and mechanical performance. The results have shown that SP can eliminate most disadvantages caused by using stone waste, particularly negative effects on the mechanical properties. They can even improve some properties of concrete, including electrical resistivity by up to around 90%. Furthermore, the concrete mixes PT5, PF5, and PF10, which were made with both SP and stone waste, obtained the best results, with over 30% improvement in the multi-criteria evaluation index values compared to the mix W0 (reference mix). The proper use of WGP as replacement for cement would have environmental benefits and help the economy of the granite stone industry.http://www.mdpi.com/2076-3417/8/10/1808waste granite powdersuperplasticizercement replacementmulti-criteria indexconcrete
collection DOAJ
language English
format Article
sources DOAJ
author Elyas Asadi Shamsabadi
Mansour Ghalehnovi
Jorge de Brito
Ali Khodabakhshian
spellingShingle Elyas Asadi Shamsabadi
Mansour Ghalehnovi
Jorge de Brito
Ali Khodabakhshian
Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
Applied Sciences
waste granite powder
superplasticizer
cement replacement
multi-criteria index
concrete
author_facet Elyas Asadi Shamsabadi
Mansour Ghalehnovi
Jorge de Brito
Ali Khodabakhshian
author_sort Elyas Asadi Shamsabadi
title Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
title_short Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
title_full Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
title_fullStr Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
title_full_unstemmed Performance of Concrete with Waste Granite Powder: The Effect of Superplasticizers
title_sort performance of concrete with waste granite powder: the effect of superplasticizers
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-10-01
description Granite stone is highly demanded by construction sector. In the processing stage, great amounts of waste powder are produced that can be used as cement replacement in concrete production. Reduced workability is the first problem of this replacement and it can be mitigated by using superplasticizers (SP). This study was carried out to limit the disadvantages related to waste granite powder (WGP) use through the use of SP. For this purpose, 19 concrete mixes containing various types of SP with different contents and WGP as cement replacement were appraised. Fresh concrete density, splitting tensile strength, electrical resistivity, compressive strength and resistance to sulphate attack tests were conducted. The mixes were assessed based on their environmental impact, economic, and mechanical performance. The results have shown that SP can eliminate most disadvantages caused by using stone waste, particularly negative effects on the mechanical properties. They can even improve some properties of concrete, including electrical resistivity by up to around 90%. Furthermore, the concrete mixes PT5, PF5, and PF10, which were made with both SP and stone waste, obtained the best results, with over 30% improvement in the multi-criteria evaluation index values compared to the mix W0 (reference mix). The proper use of WGP as replacement for cement would have environmental benefits and help the economy of the granite stone industry.
topic waste granite powder
superplasticizer
cement replacement
multi-criteria index
concrete
url http://www.mdpi.com/2076-3417/8/10/1808
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