Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin

The main purpose of this paper is to study the effect of kaolin addition on the performance of Controlled Low-Strength Material (CLSM) made using industrial hazardous waste incinerator bottom slag. Various mix formulatiuons of CLSM were made with the incinerator bottom slag, kaolin, and cement. Amou...

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Main Authors: Naganathan, S., Razak, H.A., Hamid, S.N.A.
Format: Conference or Workshop Item
Language:English
Published: 2008
Subjects:
Online Access:http://eprints.um.edu.my/9071/1/Controlled_low-strength_material_using_industrial_hazardous_waste_incinerator_bottom_slag_and_refined_kaolin.pdf
http://eprints.um.edu.my/9071/
http://ajse.kfupm.edu.sa/articles/352B20p.05.pdf
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Institution: Universiti Malaya
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spelling my.um.eprints.90712014-12-31T06:59:03Z http://eprints.um.edu.my/9071/ Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin Naganathan, S. Razak, H.A. Hamid, S.N.A. TA Engineering (General). Civil engineering (General) The main purpose of this paper is to study the effect of kaolin addition on the performance of Controlled Low-Strength Material (CLSM) made using industrial hazardous waste incinerator bottom slag. Various mix formulatiuons of CLSM were made with the incinerator bottom slag, kaolin, and cement. Amount of cement added varied from 0 to 40 percent of weight of slag. Amount of kaolin added were 25, 50, 75, and 100 percent of weight of cement. Water content was adjusted to get sufficient flowability. The CLSM mixes prepared were tested for setting time, bleeding, and corrosivity in fresh state. Tests like compressive strength, California Bearing Ratio (CBR), Initial Surface Absorption (ISAT), settlement, and water absorption, were conducted on the hardened CLSM. Compressive strength tests were conducted at 7, 14, and 28 days on 70.7 mm cubes. Heavy metals analysis for bleed and leachate water was also conducted on the CLSM mixes. The 28 days compressive strength of CLSM tested ranged from 0.36 to 4.40 MPa. CBR values ranged from 10 to 46, and ISAT values at 1 hour from 0.56 to 4.76 mL/m2/s. None of the twelve heavy metals tested exceeded the threshold limits. It is concluded that the kaolin addition in CLSM using incinerator slag showed reduction in the compressive strength, but improved performance with regard to ISAT, CBR, and water absorption. It is concluded that the incinerator slag can be developed as a new sustainable construction material in CLSM. 2008 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.um.edu.my/9071/1/Controlled_low-strength_material_using_industrial_hazardous_waste_incinerator_bottom_slag_and_refined_kaolin.pdf Naganathan, S. and Razak, H.A. and Hamid, S.N.A. (2008) Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin. In: 11th East Asia-Pacific Conference on Structural Engineering and Construction, EASEC-11, 2008, Taipei. http://ajse.kfupm.edu.sa/articles/352B20p.05.pdf
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/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Naganathan, S.
Razak, H.A.
Hamid, S.N.A.
Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
description The main purpose of this paper is to study the effect of kaolin addition on the performance of Controlled Low-Strength Material (CLSM) made using industrial hazardous waste incinerator bottom slag. Various mix formulatiuons of CLSM were made with the incinerator bottom slag, kaolin, and cement. Amount of cement added varied from 0 to 40 percent of weight of slag. Amount of kaolin added were 25, 50, 75, and 100 percent of weight of cement. Water content was adjusted to get sufficient flowability. The CLSM mixes prepared were tested for setting time, bleeding, and corrosivity in fresh state. Tests like compressive strength, California Bearing Ratio (CBR), Initial Surface Absorption (ISAT), settlement, and water absorption, were conducted on the hardened CLSM. Compressive strength tests were conducted at 7, 14, and 28 days on 70.7 mm cubes. Heavy metals analysis for bleed and leachate water was also conducted on the CLSM mixes. The 28 days compressive strength of CLSM tested ranged from 0.36 to 4.40 MPa. CBR values ranged from 10 to 46, and ISAT values at 1 hour from 0.56 to 4.76 mL/m2/s. None of the twelve heavy metals tested exceeded the threshold limits. It is concluded that the kaolin addition in CLSM using incinerator slag showed reduction in the compressive strength, but improved performance with regard to ISAT, CBR, and water absorption. It is concluded that the incinerator slag can be developed as a new sustainable construction material in CLSM.
format Conference or Workshop Item
author Naganathan, S.
Razak, H.A.
Hamid, S.N.A.
author_facet Naganathan, S.
Razak, H.A.
Hamid, S.N.A.
author_sort Naganathan, S.
title Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
title_short Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
title_full Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
title_fullStr Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
title_full_unstemmed Controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
title_sort controlled low-strength material using industrial hazardous waste incinerator bottom slag and refined kaolin
publishDate 2008
url http://eprints.um.edu.my/9071/1/Controlled_low-strength_material_using_industrial_hazardous_waste_incinerator_bottom_slag_and_refined_kaolin.pdf
http://eprints.um.edu.my/9071/
http://ajse.kfupm.edu.sa/articles/352B20p.05.pdf
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