Recycling of Waste Incineration Bottom Ash and Heavy Metal Immobilization by Geopolymer Production
Author:
Affiliation:
1. Graduate School of Sciences and Technology for Innovation, Yamaguchi University, Ube, Japan.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Link
https://www.jstage.jst.go.jp/article/jact/19/4/19_259/_pdf
Reference41 articles.
1. 1) Arbi, K., Nedeljković, M., Zuo, Y. and Ye, G., (2016). “A review on the durability of alkali-activated fly ash/slag systems: Advances, issues, and perspectives.” Industrial & Engineering Chemistry Research, 55, 5439-5453.
2. 2) Arickx, S., De Borger, V., Van Gerven, T. and Vandecasteele, C., (2010). “Effect of carbonation on the leaching of organic carbon and of copper from MSWI bottom ash.” Waste Management, 30, 1296-1302.
3. 3) Bernal, S. A. and Provis, J. L., (2013). “Gel nanostructure in alkali-activated binders based on slag and fly ash, and effects of accelerated carbonation.” Cement and Concrete Research, 53, 127-144.
4. 4) Chen, Z., Liu, Y., Zhu, W. and Yang, E., (2016). “Incinerator bottom ash (BA) aerated geopolymer.” Construction and Building Materials, 112, 1025-1031.
5. 5) Davidovits, J., (2015). “Geopolymer chemistry and applications.” Saint-Quentin, France: Institut Géopolymère.
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