Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete

In order to study the influence of ash-aggregate ratio on compressive strength and void fraction of recycled green eco-concrete, the green eco-concrete prepared with recycled aggregate is selected in this study, which conforms to the concept of sustainable development. The effective porosity, compre...

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Main Authors: Wang, Xiaoqin, Peng, Mengying, Wang, Ciyu, Khan Chowdhury, Ahmed Jalal
Format: Article
Language:English
English
Published: Technoscience Publications 2019
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Online Access:http://irep.iium.edu.my/78617/1/Effect%20of%20Lime-bone%20Ratio%20on%20Compressive%20Strength%20and%20Void%20Fraction%20of.pdf
http://irep.iium.edu.my/78617/7/Scopus%20-%20effect%20of%20lime%20bone.pdf
http://irep.iium.edu.my/78617/
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spelling my.iium.irep.786172020-02-11T08:26:31Z http://irep.iium.edu.my/78617/ Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete Wang, Xiaoqin Peng, Mengying Wang, Ciyu Khan Chowdhury, Ahmed Jalal TH6014 Environmental engineering. In order to study the influence of ash-aggregate ratio on compressive strength and void fraction of recycled green eco-concrete, the green eco-concrete prepared with recycled aggregate is selected in this study, which conforms to the concept of sustainable development. The effective porosity, compressive strength and permeability coefficient of concrete are studied, so as to determine the impact of different lime-aggregate ratio and water-cement ratio on recycled green ecological concrete. It is found that with the increase of the ash-bone ratio, the compressive strength decreases, and the ash-bone ratio is negatively correlated with the compressive strength. With the increase of the ash-bone ratio, the effective porosity increases, and the ash-bone ratio is positively correlated with the effective porosity. The compressive strength increases with the increase of water cement ratio. The water cement ratio is positively correlated with compressive strength, and the influence of water cement ratio on effective porosity shows a complex trend of rising first and then decreasing. This study lays a foundation for choosing suitable green ecological concrete, applies green ecological concrete to practical projects and verifies the feasibility of engineering application. Technoscience Publications 2019-12-15 Article PeerReviewed application/pdf en http://irep.iium.edu.my/78617/1/Effect%20of%20Lime-bone%20Ratio%20on%20Compressive%20Strength%20and%20Void%20Fraction%20of.pdf application/pdf en http://irep.iium.edu.my/78617/7/Scopus%20-%20effect%20of%20lime%20bone.pdf Wang, Xiaoqin and Peng, Mengying and Wang, Ciyu and Khan Chowdhury, Ahmed Jalal (2019) Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete. Nature Environment and Pollution Technology, 18 (5 (Special Issue)). pp. 1579-1583. ISSN 0972-6268 E-ISSN 2395-3454 http://www.neptjournal.com/upload-images/NL-73-18-16-Final.pdf
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic TH6014 Environmental engineering.
spellingShingle TH6014 Environmental engineering.
Wang, Xiaoqin
Peng, Mengying
Wang, Ciyu
Khan Chowdhury, Ahmed Jalal
Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
description In order to study the influence of ash-aggregate ratio on compressive strength and void fraction of recycled green eco-concrete, the green eco-concrete prepared with recycled aggregate is selected in this study, which conforms to the concept of sustainable development. The effective porosity, compressive strength and permeability coefficient of concrete are studied, so as to determine the impact of different lime-aggregate ratio and water-cement ratio on recycled green ecological concrete. It is found that with the increase of the ash-bone ratio, the compressive strength decreases, and the ash-bone ratio is negatively correlated with the compressive strength. With the increase of the ash-bone ratio, the effective porosity increases, and the ash-bone ratio is positively correlated with the effective porosity. The compressive strength increases with the increase of water cement ratio. The water cement ratio is positively correlated with compressive strength, and the influence of water cement ratio on effective porosity shows a complex trend of rising first and then decreasing. This study lays a foundation for choosing suitable green ecological concrete, applies green ecological concrete to practical projects and verifies the feasibility of engineering application.
format Article
author Wang, Xiaoqin
Peng, Mengying
Wang, Ciyu
Khan Chowdhury, Ahmed Jalal
author_facet Wang, Xiaoqin
Peng, Mengying
Wang, Ciyu
Khan Chowdhury, Ahmed Jalal
author_sort Wang, Xiaoqin
title Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
title_short Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
title_full Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
title_fullStr Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
title_full_unstemmed Effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
title_sort effect of lime-bone ratio on compressive strength and void fraction of recycled green ecological concrete
publisher Technoscience Publications
publishDate 2019
url http://irep.iium.edu.my/78617/1/Effect%20of%20Lime-bone%20Ratio%20on%20Compressive%20Strength%20and%20Void%20Fraction%20of.pdf
http://irep.iium.edu.my/78617/7/Scopus%20-%20effect%20of%20lime%20bone.pdf
http://irep.iium.edu.my/78617/
http://www.neptjournal.com/upload-images/NL-73-18-16-Final.pdf
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score 13.160551