A Review of Recent Advances in Alkali-activated Materials from Silica-rich Wastes Derived Sodium Silicate Activators
Author:
Affiliation:
1. School of Civil Engineering, Fuzhou University, Fuzhou 350108, China.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Link
https://www.jstage.jst.go.jp/article/jact/21/3/21_189/_pdf
Reference85 articles.
1. 1) Abdulkareem, M., Havukainen, J. and Horttanainen, M., (2019). “How environmentally sustainable are fibre reinforced alkali-activated concretes?” Journal of Cleaner Production, 236, 117601.
2. 2) Abdulkareem, M., Havukainen, J., Nuortila-Jokinen, J. and Horttanainen, M., (2021). “Environmental and economic perspective of waste-derived activators on alkali-activated mortars.” Journal of Cleaner Production, 280, 124651.
3. 3) Alam, Q., Hendrix, Y., Thijs, L., Lazaro, A., Schollbach, K. and Brouwers, H. J. H., (2019). “Novel low temperature synthesis of sodium silicate and ordered mesoporous silica from incineration bottom ash.” Journal of Cleaner Production, 211, 874-883.
4. 4) Alkhaly, Y. R. and Hasan, M., (2022). “Characteristics of reactive powder concrete comprising synthesized rice husk ash and quartzite powder.” Journal of Cleaner Production, 375, 134154.
5. 5) Alnahhal, M. F., Hamdan, A., Hajimohammadi, A. and Kim, T., (2021a). “Effect of rice husk ash-derived activator on the structural build-up of alkali activated materials.” Cement and Concrete Research, 150, 106590.
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