Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar

This research aims to develop sustainable and structural-grade mortar by partially replacing conventional cement with two palm oil-based by-products namely, unprocessed ecominerals (UEM), ground and unground ecoprocessed pozzolan (GEPP & EPP). The study investigated the physical, chemical, morph...

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Main Authors: Lin, Ying, Alengaram, U. Johnson, Ibrahim, Zainah, Ibrahim, Muhammad Shazril Idris, Alnahhal, Ahmed Mahmoud, Srinivas, M. Karthick
Format: Article
Published: Elsevier 2024
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Online Access:http://eprints.um.edu.my/44263/
https://doi.org/10.1016/j.conbuildmat.2023.134344
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Institution: Universiti Malaya
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spelling my.um.eprints.442632024-06-28T07:39:39Z http://eprints.um.edu.my/44263/ Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar Lin, Ying Alengaram, U. Johnson Ibrahim, Zainah Ibrahim, Muhammad Shazril Idris Alnahhal, Ahmed Mahmoud Srinivas, M. Karthick TD Environmental technology. Sanitary engineering TH Building construction This research aims to develop sustainable and structural-grade mortar by partially replacing conventional cement with two palm oil-based by-products namely, unprocessed ecominerals (UEM), ground and unground ecoprocessed pozzolan (GEPP & EPP). The study investigated the physical, chemical, morphological, and mineralogical properties of UEM, EPP, and ground EPP. In addition, this research focused on examining the effect of cement replaced by UEM, EPP, and GEPP at various levels on workability, hardened properties, microstructure, and CO2 emissions aspects of mortar in two stages. Cement substituted by UEM and EPP at 0-70% in first stage, while it replaced by EPP and GEPP at 0-50% in second stage. The research findings demonstrate that incorporating UEM, EPP, and GEPP as SCMs reduces the flow, density, UPV, and compressive strength compared to the control mortar while increasing the water absorption and porosity. The quality of mortar containing up to 30% UEM and 70% EPP is classified as good based on the UPV results. The 30% UEM, 50% EPP, and 50% GEPP mortar are classified as structural-grade mortar. The control mortar exhibited a denser matrix when compared to UEM, EPP, and GEPP mortars from FESEM images. GEPP consumed the highest amount of Ca(OH)2, followed by EPP and UEM based on the XRD pattern. Incorporating UEM and EPP significantly reduces CO2 emissions compared to control mortar. Moreover, this research promotes the acceptance and utilisation of EPP in the construction industry. Elsevier 2024-01-12 Article PeerReviewed Lin, Ying and Alengaram, U. Johnson and Ibrahim, Zainah and Ibrahim, Muhammad Shazril Idris and Alnahhal, Ahmed Mahmoud and Srinivas, M. Karthick (2024) Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar. Construction and Building Materials, 411. ISSN 0950-0618, DOI https://doi.org/10.1016/j.conbuildmat.2023.134344 <https://doi.org/10.1016/j.conbuildmat.2023.134344>. https://doi.org/10.1016/j.conbuildmat.2023.134344 10.1016/j.conbuildmat.2023.134344
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TD Environmental technology. Sanitary engineering
TH Building construction
spellingShingle TD Environmental technology. Sanitary engineering
TH Building construction
Lin, Ying
Alengaram, U. Johnson
Ibrahim, Zainah
Ibrahim, Muhammad Shazril Idris
Alnahhal, Ahmed Mahmoud
Srinivas, M. Karthick
Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
description This research aims to develop sustainable and structural-grade mortar by partially replacing conventional cement with two palm oil-based by-products namely, unprocessed ecominerals (UEM), ground and unground ecoprocessed pozzolan (GEPP & EPP). The study investigated the physical, chemical, morphological, and mineralogical properties of UEM, EPP, and ground EPP. In addition, this research focused on examining the effect of cement replaced by UEM, EPP, and GEPP at various levels on workability, hardened properties, microstructure, and CO2 emissions aspects of mortar in two stages. Cement substituted by UEM and EPP at 0-70% in first stage, while it replaced by EPP and GEPP at 0-50% in second stage. The research findings demonstrate that incorporating UEM, EPP, and GEPP as SCMs reduces the flow, density, UPV, and compressive strength compared to the control mortar while increasing the water absorption and porosity. The quality of mortar containing up to 30% UEM and 70% EPP is classified as good based on the UPV results. The 30% UEM, 50% EPP, and 50% GEPP mortar are classified as structural-grade mortar. The control mortar exhibited a denser matrix when compared to UEM, EPP, and GEPP mortars from FESEM images. GEPP consumed the highest amount of Ca(OH)2, followed by EPP and UEM based on the XRD pattern. Incorporating UEM and EPP significantly reduces CO2 emissions compared to control mortar. Moreover, this research promotes the acceptance and utilisation of EPP in the construction industry.
format Article
author Lin, Ying
Alengaram, U. Johnson
Ibrahim, Zainah
Ibrahim, Muhammad Shazril Idris
Alnahhal, Ahmed Mahmoud
Srinivas, M. Karthick
author_facet Lin, Ying
Alengaram, U. Johnson
Ibrahim, Zainah
Ibrahim, Muhammad Shazril Idris
Alnahhal, Ahmed Mahmoud
Srinivas, M. Karthick
author_sort Lin, Ying
title Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
title_short Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
title_full Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
title_fullStr Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
title_full_unstemmed Performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
title_sort performance appraisal of high volume of sustainable unprocessed eco-minerals, ground and unground eco-processed pozzolan as cement replacement materials in mortar
publisher Elsevier
publishDate 2024
url http://eprints.um.edu.my/44263/
https://doi.org/10.1016/j.conbuildmat.2023.134344
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