Utilization of aggregate quarry waste in construction industry

The use of solid wastes as a new ingredient in construction materials is one possible innovative effort to reduce environmental degradation and to facilitate sustainable use of natural resources. The disposal of the huge amount of wastes from aggregate quarry (WAQ) is one adverse environmental effec...

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Main Authors: Adajar, Mary Ann Q., de Guzman, Euclid, Ho, Ryan, Palma, Cesar, Sindico, Dennis
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Published: Animo Repository 2017
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/1492
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=2491&context=faculty_research
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Institution: De La Salle University
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-24912021-06-30T00:22:04Z Utilization of aggregate quarry waste in construction industry Adajar, Mary Ann Q. de Guzman, Euclid Ho, Ryan Palma, Cesar Sindico, Dennis The use of solid wastes as a new ingredient in construction materials is one possible innovative effort to reduce environmental degradation and to facilitate sustainable use of natural resources. The disposal of the huge amount of wastes from aggregate quarry (WAQ) is one adverse environmental effects of quarrying activities. Finding useful application of this solid waste, specifically as a substitute for fine aggregates in concrete mix, alleviates disposal problems and helps the construction industry to come up with concrete products at lesser cost. This study investigates the structural performance of concrete with WAQ as substitute for fine aggregates in a concrete mix following ASTM standards. Concrete with WAQ as fine aggregates achieved almost 78% of its target compressive strength. The reduced compressive strength is due to the finer and less-angular particles of WAQ in comparison to sand. Empirical model was formulated that can be used to predict the compressive strength of concrete with WAQ as substitute for sand. Using the formulated model, the optimum compressive strength can be achieved at 85% substitution for sand. The flexural strength of concrete with WAQ was in the range of 69% to 72% of the flexural strength of concrete without WAQ. The presence of WAQ in the concrete mixture has no significant effect in its unit weight, however, it affects the workability of the mix due to its cohesive property thus requires higher water-cement ratio. Test results proved that concrete with WAQ as substitute for fine aggregates has strength properties adequate for structural application. © Int. J. of GEOMATE. All rights reserved. 2017-01-01T08:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/faculty_research/1492 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=2491&context=faculty_research Faculty Research Work Animo Repository Aggregates (Building materials)--Compression testing Flexure Strength of materials Civil Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Aggregates (Building materials)--Compression testing
Flexure
Strength of materials
Civil Engineering
spellingShingle Aggregates (Building materials)--Compression testing
Flexure
Strength of materials
Civil Engineering
Adajar, Mary Ann Q.
de Guzman, Euclid
Ho, Ryan
Palma, Cesar
Sindico, Dennis
Utilization of aggregate quarry waste in construction industry
description The use of solid wastes as a new ingredient in construction materials is one possible innovative effort to reduce environmental degradation and to facilitate sustainable use of natural resources. The disposal of the huge amount of wastes from aggregate quarry (WAQ) is one adverse environmental effects of quarrying activities. Finding useful application of this solid waste, specifically as a substitute for fine aggregates in concrete mix, alleviates disposal problems and helps the construction industry to come up with concrete products at lesser cost. This study investigates the structural performance of concrete with WAQ as substitute for fine aggregates in a concrete mix following ASTM standards. Concrete with WAQ as fine aggregates achieved almost 78% of its target compressive strength. The reduced compressive strength is due to the finer and less-angular particles of WAQ in comparison to sand. Empirical model was formulated that can be used to predict the compressive strength of concrete with WAQ as substitute for sand. Using the formulated model, the optimum compressive strength can be achieved at 85% substitution for sand. The flexural strength of concrete with WAQ was in the range of 69% to 72% of the flexural strength of concrete without WAQ. The presence of WAQ in the concrete mixture has no significant effect in its unit weight, however, it affects the workability of the mix due to its cohesive property thus requires higher water-cement ratio. Test results proved that concrete with WAQ as substitute for fine aggregates has strength properties adequate for structural application. © Int. J. of GEOMATE. All rights reserved.
format text
author Adajar, Mary Ann Q.
de Guzman, Euclid
Ho, Ryan
Palma, Cesar
Sindico, Dennis
author_facet Adajar, Mary Ann Q.
de Guzman, Euclid
Ho, Ryan
Palma, Cesar
Sindico, Dennis
author_sort Adajar, Mary Ann Q.
title Utilization of aggregate quarry waste in construction industry
title_short Utilization of aggregate quarry waste in construction industry
title_full Utilization of aggregate quarry waste in construction industry
title_fullStr Utilization of aggregate quarry waste in construction industry
title_full_unstemmed Utilization of aggregate quarry waste in construction industry
title_sort utilization of aggregate quarry waste in construction industry
publisher Animo Repository
publishDate 2017
url https://animorepository.dlsu.edu.ph/faculty_research/1492
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=2491&context=faculty_research
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