Thermal properties of concrete paver containing effective microorganism

Numbers of research have been developed and studied for the mitigation of the Urban Heat Island effect through the concrete pavements. Waste material that enhance the strength of structures, reducing noise in pavements as well as improving heat properties were introduced. In this study, the applicat...

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Main Author: Hasnol Puad, Nur Ayunie
Format: Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.utm.my/91990/1/NurAyunieHasnolMSKA2020.pdf.pdf
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author Hasnol Puad, Nur Ayunie
author_facet Hasnol Puad, Nur Ayunie
author_sort Hasnol Puad, Nur Ayunie
description Numbers of research have been developed and studied for the mitigation of the Urban Heat Island effect through the concrete pavements. Waste material that enhance the strength of structures, reducing noise in pavements as well as improving heat properties were introduced. In this study, the application of marine kaolin and effective microorganism (EM) as part of cementitious material is carried out as a solution to reduce the heat emittance produced by a cement-water chemical reaction known as hydration process. The idea of mortar laid on top of concrete pavers to observe its effect on thermal properties is carried out. This study consists of 3 objectives that are to determine the surface temperature of marine kaolin mortar mixed with EM, to identify its thermal conductivity and to determine the optimum mix proportion of marine kaolin and EM. Most of the research however has include either marine kaolin or EM with other substances in their studies, however very limited research incorporating both materials. The reliability and efficiency of different methods are demonstrated experimentally and compared. Previous studies implementing EM or marine kaolin separately in the concrete mix are also reviewed. However, the improvement of thermal properties is focused in this study. Therefore, the lowest surface temperature and thermal conductivity achieved was to incorporate 10% marine kaolin mortar with 10% EM content. The 10mm thickness mortar laid, had reduced the temperature by 4% compared to the controlled sample and 6% lower than normal mortar at day-52. Although the research knowledge on the chemical reaction affecting mortar thermal properties is limited, this is a good alternative in reducing surface heat temperature of concrete paver.
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spelling uthm-919902021-08-30T04:17:21Z http://eprints.utm.my/91990/ Thermal properties of concrete paver containing effective microorganism Hasnol Puad, Nur Ayunie TA Engineering (General). Civil engineering (General) Numbers of research have been developed and studied for the mitigation of the Urban Heat Island effect through the concrete pavements. Waste material that enhance the strength of structures, reducing noise in pavements as well as improving heat properties were introduced. In this study, the application of marine kaolin and effective microorganism (EM) as part of cementitious material is carried out as a solution to reduce the heat emittance produced by a cement-water chemical reaction known as hydration process. The idea of mortar laid on top of concrete pavers to observe its effect on thermal properties is carried out. This study consists of 3 objectives that are to determine the surface temperature of marine kaolin mortar mixed with EM, to identify its thermal conductivity and to determine the optimum mix proportion of marine kaolin and EM. Most of the research however has include either marine kaolin or EM with other substances in their studies, however very limited research incorporating both materials. The reliability and efficiency of different methods are demonstrated experimentally and compared. Previous studies implementing EM or marine kaolin separately in the concrete mix are also reviewed. However, the improvement of thermal properties is focused in this study. Therefore, the lowest surface temperature and thermal conductivity achieved was to incorporate 10% marine kaolin mortar with 10% EM content. The 10mm thickness mortar laid, had reduced the temperature by 4% compared to the controlled sample and 6% lower than normal mortar at day-52. Although the research knowledge on the chemical reaction affecting mortar thermal properties is limited, this is a good alternative in reducing surface heat temperature of concrete paver. 2020 Thesis NonPeerReviewed application/pdf en http://eprints.utm.my/91990/1/NurAyunieHasnolMSKA2020.pdf.pdf Hasnol Puad, Nur Ayunie (2020) Thermal properties of concrete paver containing effective microorganism. Masters thesis, Universiti Teknologi Malaysia. http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:138680
spellingShingle TA Engineering (General). Civil engineering (General)
Hasnol Puad, Nur Ayunie
Thermal properties of concrete paver containing effective microorganism
title Thermal properties of concrete paver containing effective microorganism
title_full Thermal properties of concrete paver containing effective microorganism
title_fullStr Thermal properties of concrete paver containing effective microorganism
title_full_unstemmed Thermal properties of concrete paver containing effective microorganism
title_short Thermal properties of concrete paver containing effective microorganism
title_sort thermal properties of concrete paver containing effective microorganism
topic TA Engineering (General). Civil engineering (General)
url http://eprints.utm.my/91990/1/NurAyunieHasnolMSKA2020.pdf.pdf
url-record http://eprints.utm.my/91990/
http://dms.library.utm.my:8080/vital/access/manager/Repository/vital:138680
work_keys_str_mv AT hasnolpuadnurayunie thermalpropertiesofconcretepavercontainingeffectivemicroorganism