Evaluation of vege-grout treated slope by electrical resistivity

Soil stabilization using bio-grouting method based on microbial induced calcium carbonate precipitation (MICP) technology has been developed recently to improve the engineering properties of the soil. This new technology could provide an alternative to traditional methods of soil stabilization using...

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Main Authors: Baharuddin, I.N.Z., Taha, H., Omar, R.C., Roslan, R., Buslima, F.S., Rizal, K.
Format: Article
Language:English
Published: 2019
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spelling my.uniten.dspace-116562020-07-08T03:16:56Z Evaluation of vege-grout treated slope by electrical resistivity Baharuddin, I.N.Z. Taha, H. Omar, R.C. Roslan, R. Buslima, F.S. Rizal, K. Soil stabilization using bio-grouting method based on microbial induced calcium carbonate precipitation (MICP) technology has been developed recently to improve the engineering properties of the soil. This new technology could provide an alternative to traditional methods of soil stabilization using soilcement and chemical grouting. Vegetable waste is a good source for the growth of various kinds of microorganisms which is suitable to be applied as bio-grouting material. The bio-grout extract known as vege-grout was able to induce bio-cementation and bio-clogging process. In this study, vege-grout from vegetable waste was injected into the soil to strengthen the slope and improve the mechanical properties of the affected area. The changes in the subsurface soil after treatment with vege-grout were evaluated by electrical resistivity measurement. Resistivity test showed the resistance in the soil has increased after the grouting using vege-grout. Results indicated that the underneath soils have transformed from medium dense sand to dense sand. The water containment in the subsurface appeared to shift deeper into the ground. SEM analysis showed evidence of bio-clogging process as a result of microbial activities in the soil. This analysis showed that the vege-grout from vegetable waste has successfully strengthened and stabilized the slope from soil erosion. © 2018 Authors. 2019-01-16T23:54:04Z 2019-01-16T23:54:04Z 2018 Article 10.14419/ijet.v7i4.35.22352 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description Soil stabilization using bio-grouting method based on microbial induced calcium carbonate precipitation (MICP) technology has been developed recently to improve the engineering properties of the soil. This new technology could provide an alternative to traditional methods of soil stabilization using soilcement and chemical grouting. Vegetable waste is a good source for the growth of various kinds of microorganisms which is suitable to be applied as bio-grouting material. The bio-grout extract known as vege-grout was able to induce bio-cementation and bio-clogging process. In this study, vege-grout from vegetable waste was injected into the soil to strengthen the slope and improve the mechanical properties of the affected area. The changes in the subsurface soil after treatment with vege-grout were evaluated by electrical resistivity measurement. Resistivity test showed the resistance in the soil has increased after the grouting using vege-grout. Results indicated that the underneath soils have transformed from medium dense sand to dense sand. The water containment in the subsurface appeared to shift deeper into the ground. SEM analysis showed evidence of bio-clogging process as a result of microbial activities in the soil. This analysis showed that the vege-grout from vegetable waste has successfully strengthened and stabilized the slope from soil erosion. © 2018 Authors.
format Article
author Baharuddin, I.N.Z.
Taha, H.
Omar, R.C.
Roslan, R.
Buslima, F.S.
Rizal, K.
spellingShingle Baharuddin, I.N.Z.
Taha, H.
Omar, R.C.
Roslan, R.
Buslima, F.S.
Rizal, K.
Evaluation of vege-grout treated slope by electrical resistivity
author_facet Baharuddin, I.N.Z.
Taha, H.
Omar, R.C.
Roslan, R.
Buslima, F.S.
Rizal, K.
author_sort Baharuddin, I.N.Z.
title Evaluation of vege-grout treated slope by electrical resistivity
title_short Evaluation of vege-grout treated slope by electrical resistivity
title_full Evaluation of vege-grout treated slope by electrical resistivity
title_fullStr Evaluation of vege-grout treated slope by electrical resistivity
title_full_unstemmed Evaluation of vege-grout treated slope by electrical resistivity
title_sort evaluation of vege-grout treated slope by electrical resistivity
publishDate 2019
_version_ 1672614167224254464
score 13.154949