Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete

Green concrete was introduced in concrete production in order to reduce the usage of natural resources. In this research, fly ash and MWCNTs were used in the production of green concrete since industrial waste material such as fly ash becomes a major concern during waste disposal. MWCNTs was used in...

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Main Authors: Jumaat, A.A., Afandi, N.F., Manap, A., Zainuddin, R.A., Mahalingam, S., Abd Kadir, N.F.
Format: Conference Paper
Language:English
Published: 2020
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Institution: Universiti Tenaga Nasional
Language: English
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spelling my.uniten.dspace-127562020-07-07T06:56:50Z Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete Jumaat, A.A. Afandi, N.F. Manap, A. Zainuddin, R.A. Mahalingam, S. Abd Kadir, N.F. Green concrete was introduced in concrete production in order to reduce the usage of natural resources. In this research, fly ash and MWCNTs were used in the production of green concrete since industrial waste material such as fly ash becomes a major concern during waste disposal. MWCNTs was used in this experiment to strengthen this green concrete. In this paper, effect of heat during curing process was studied and it was found that the compressive strength was increase when introducing the heat during curing process of this green concrete. The 3 days of water curing at room temperature and 3 days of heat curing at 100°C produces compressive strength at 27.2 MPa which is higher than normal curing process at 28 days, which is 14.63 MPa. Therefore, this research shows that green concrete can be produced using fly ash and MWCNTs and produce high compressive strength when heat was presence during curing process. © Published under licence by IOP Publishing Ltd. 2020-02-03T03:26:29Z 2020-02-03T03:26:29Z 2019 Conference Paper 10.1088/1742-6596/1349/1/012021 en
institution Universiti Tenaga Nasional
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country Malaysia
content_provider Universiti Tenaga Nasional
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language English
description Green concrete was introduced in concrete production in order to reduce the usage of natural resources. In this research, fly ash and MWCNTs were used in the production of green concrete since industrial waste material such as fly ash becomes a major concern during waste disposal. MWCNTs was used in this experiment to strengthen this green concrete. In this paper, effect of heat during curing process was studied and it was found that the compressive strength was increase when introducing the heat during curing process of this green concrete. The 3 days of water curing at room temperature and 3 days of heat curing at 100°C produces compressive strength at 27.2 MPa which is higher than normal curing process at 28 days, which is 14.63 MPa. Therefore, this research shows that green concrete can be produced using fly ash and MWCNTs and produce high compressive strength when heat was presence during curing process. © Published under licence by IOP Publishing Ltd.
format Conference Paper
author Jumaat, A.A.
Afandi, N.F.
Manap, A.
Zainuddin, R.A.
Mahalingam, S.
Abd Kadir, N.F.
spellingShingle Jumaat, A.A.
Afandi, N.F.
Manap, A.
Zainuddin, R.A.
Mahalingam, S.
Abd Kadir, N.F.
Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
author_facet Jumaat, A.A.
Afandi, N.F.
Manap, A.
Zainuddin, R.A.
Mahalingam, S.
Abd Kadir, N.F.
author_sort Jumaat, A.A.
title Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
title_short Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
title_full Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
title_fullStr Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
title_full_unstemmed Synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
title_sort synthesis of multiwall carbon nanotube with fly ash in the production of desired green concrete
publishDate 2020
_version_ 1672614171943895040