LAPSE:2023.4106
Published Article

LAPSE:2023.4106
Use of Waste Glass as A Replacement for Raw Materials in Mortars with a Lower Environmental Impact
February 22, 2023
Abstract
Glass waste used in mortars or concretes behaves similar to cement, with resulting environmental benefits. In this light, the behavior of glass powder of various particle sizes has been analyzed as a cement replacement in mortars, in an attempt to minimize the loss of strength and durability, and maximize the amount of materials replaced. The dry density, water accessible porosity, water absorption by immersion, capillary absorption coefficient, ultrasonic pulse velocity and both compressive and flexural strengths were studied in the mortars. Furthermore, a statistical analysis of the obtained results and a greenhouse gases assessment were also performed. In view of the results obtained, glass powder of 38 microns allows up to 30% of the cement to be replaced, due to the filler effect combined with its pozzolanic activity. Moreover, it has been observed that glass powder size is one of the factors with the greatest influence among the properties of porosity, absorption and capillarity. On the other hand, in the mechanical properties, this factor does not contribute significantly more than the amount of glass powder. Finally, the greenhouse gasses analysis shows that the incorporation of glass powder reduces the CO2 emissions associated with mortar up to 29.47%.
Glass waste used in mortars or concretes behaves similar to cement, with resulting environmental benefits. In this light, the behavior of glass powder of various particle sizes has been analyzed as a cement replacement in mortars, in an attempt to minimize the loss of strength and durability, and maximize the amount of materials replaced. The dry density, water accessible porosity, water absorption by immersion, capillary absorption coefficient, ultrasonic pulse velocity and both compressive and flexural strengths were studied in the mortars. Furthermore, a statistical analysis of the obtained results and a greenhouse gases assessment were also performed. In view of the results obtained, glass powder of 38 microns allows up to 30% of the cement to be replaced, due to the filler effect combined with its pozzolanic activity. Moreover, it has been observed that glass powder size is one of the factors with the greatest influence among the properties of porosity, absorption and capillarity. On the other hand, in the mechanical properties, this factor does not contribute significantly more than the amount of glass powder. Finally, the greenhouse gasses analysis shows that the incorporation of glass powder reduces the CO2 emissions associated with mortar up to 29.47%.
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Keywords
durability, mechanical properties, sustainable mortar, waste glass powder
Subject
Suggested Citation
Letelier V, Henríquez-Jara BI, Manosalva M, Parodi C, Ortega JM. Use of Waste Glass as A Replacement for Raw Materials in Mortars with a Lower Environmental Impact. (2023). LAPSE:2023.4106
Author Affiliations
Letelier V: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile [ORCID]
Henríquez-Jara BI: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile [ORCID]
Manosalva M: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile
Parodi C: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile
Ortega JM: Departamento de Ingeniería Civil, Universidad de Alicante, Ap. Correos 99, 03080 Alacant/Alicante, Spain [ORCID]
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Henríquez-Jara BI: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile [ORCID]
Manosalva M: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile
Parodi C: Department of Civil Engineering, Universidad de la Frontera, Av. Fco. Temuco, Salazar 01145, Chile
Ortega JM: Departamento de Ingeniería Civil, Universidad de Alicante, Ap. Correos 99, 03080 Alacant/Alicante, Spain [ORCID]
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Journal Name
Energies
Volume
12
Issue
10
Article Number
E1974
Year
2019
Publication Date
2019-05-23
ISSN
1996-1073
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Original Submission
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PII: en12101974, Publication Type: Journal Article
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LAPSE:2023.4106
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https://doi.org/10.3390/en12101974
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Feb 22, 2023
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