Bio-concrete on chloride condition: effect on compressive strength and water penetration

In recent years, the beneficial effect of sulphate reduction bacteria (SRB) to induce calcium carbonate precipitation on the concrete structure has gradually increase great attention in the industry. In this study, different SRB concentration (0%, 3%, 5% and 7%) and water cement ratio (0.4w/c, 0.5w/...

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Main Authors: Teddy, T., J.M., Irwan, Othman, N., Gani, P.
Format: Article
Language:English
Published: Construction Research Institute of Malaysia (CREAM) 2018
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Online Access:http://eprints.uthm.edu.my/4380/1/AJ%202018%20%2872%29.pdf
http://eprints.uthm.edu.my/4380/
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Institution: Universiti Tun Hussein Onn Malaysia
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spelling my.uthm.eprints.43802021-12-02T04:09:42Z http://eprints.uthm.edu.my/4380/ Bio-concrete on chloride condition: effect on compressive strength and water penetration Teddy, T. J.M., Irwan Othman, N. Gani, P. TA Engineering (General). Civil engineering (General) TH Building construction TD429.5-480.7 Water purification. Water treatment and conditioning. Saline water conversion TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction In recent years, the beneficial effect of sulphate reduction bacteria (SRB) to induce calcium carbonate precipitation on the concrete structure has gradually increase great attention in the industry. In this study, different SRB concentration (0%, 3%, 5% and 7%) and water cement ratio (0.4w/c, 0.5w/c and 0.6w/c) was investigated in term of compressive strength and water penetration. Since the sample curing in saline water, thus, the sample on chloride condition also investigated accordingly. Compressive strength and water penetration test were performed at the stage of 28th, 56th, 90th, 180th and 360th day of curing period. Test results indicated that the best SRB concentration to be mixed in bio-concrete was 5% while 0.5w/c for water cement ratio. Both values enhanced significantly the compressive strength and reduced porosity and water penetration of bio-concrete. The maximum increased of compressive strength in 0.5w/c is 58.6MPa was observed with 5% of SRB on the day 180 of curing time. Meanwhile, the lowest water penetration was recorded on the last day (day 360) of curing with 2.93cm at the 5% and 0.6w/c of SRB concentration and water cement ratio, respectively. These improvements were due to deposition on the SRB cells within the pore of the concrete cube as cured in chloride water. Results of this study demonstrated the role of SRB induced calcium carbonate precipitation in improving the concrete structure cured in extreme condition in term of compressive strength and water penetration. Construction Research Institute of Malaysia (CREAM) 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/4380/1/AJ%202018%20%2872%29.pdf Teddy, T. and J.M., Irwan and Othman, N. and Gani, P. (2018) Bio-concrete on chloride condition: effect on compressive strength and water penetration. Malaysian Construction Research Journal (MCRJ), 4 (2). pp. 129-140. ISSN 2590 - 4140
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TA Engineering (General). Civil engineering (General)
TH Building construction
TD429.5-480.7 Water purification. Water treatment and conditioning. Saline water conversion
TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction
spellingShingle TA Engineering (General). Civil engineering (General)
TH Building construction
TD429.5-480.7 Water purification. Water treatment and conditioning. Saline water conversion
TH1000-1725 Systems of building construction. Including fireproof construction, concrete construction
Teddy, T.
J.M., Irwan
Othman, N.
Gani, P.
Bio-concrete on chloride condition: effect on compressive strength and water penetration
description In recent years, the beneficial effect of sulphate reduction bacteria (SRB) to induce calcium carbonate precipitation on the concrete structure has gradually increase great attention in the industry. In this study, different SRB concentration (0%, 3%, 5% and 7%) and water cement ratio (0.4w/c, 0.5w/c and 0.6w/c) was investigated in term of compressive strength and water penetration. Since the sample curing in saline water, thus, the sample on chloride condition also investigated accordingly. Compressive strength and water penetration test were performed at the stage of 28th, 56th, 90th, 180th and 360th day of curing period. Test results indicated that the best SRB concentration to be mixed in bio-concrete was 5% while 0.5w/c for water cement ratio. Both values enhanced significantly the compressive strength and reduced porosity and water penetration of bio-concrete. The maximum increased of compressive strength in 0.5w/c is 58.6MPa was observed with 5% of SRB on the day 180 of curing time. Meanwhile, the lowest water penetration was recorded on the last day (day 360) of curing with 2.93cm at the 5% and 0.6w/c of SRB concentration and water cement ratio, respectively. These improvements were due to deposition on the SRB cells within the pore of the concrete cube as cured in chloride water. Results of this study demonstrated the role of SRB induced calcium carbonate precipitation in improving the concrete structure cured in extreme condition in term of compressive strength and water penetration.
format Article
author Teddy, T.
J.M., Irwan
Othman, N.
Gani, P.
author_facet Teddy, T.
J.M., Irwan
Othman, N.
Gani, P.
author_sort Teddy, T.
title Bio-concrete on chloride condition: effect on compressive strength and water penetration
title_short Bio-concrete on chloride condition: effect on compressive strength and water penetration
title_full Bio-concrete on chloride condition: effect on compressive strength and water penetration
title_fullStr Bio-concrete on chloride condition: effect on compressive strength and water penetration
title_full_unstemmed Bio-concrete on chloride condition: effect on compressive strength and water penetration
title_sort bio-concrete on chloride condition: effect on compressive strength and water penetration
publisher Construction Research Institute of Malaysia (CREAM)
publishDate 2018
url http://eprints.uthm.edu.my/4380/1/AJ%202018%20%2872%29.pdf
http://eprints.uthm.edu.my/4380/
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