Effect of Calcined MgO-rich Byproduct from the Extraction of Li2CO3 on the Performance of Magnesium Phosphate Cement
Author:
Affiliation:
1. School of Civil Engineering, Qinghai University, Xining, PR China.
2. Department of Civil Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, PR China.
Publisher
Japan Concrete Institute
Subject
General Materials Science,Building and Construction
Link
https://www.jstage.jst.go.jp/article/jact/15/12/15_749/_pdf
Reference30 articles.
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2. 2) Dong, J. and Yu, H., (2016). “Effects of calcination temperature of boron-containing magnesium oxide raw materials on properties of magnesium phosphate cement as a biomaterial.” Wuhan Univ. Technol. Mater. Sci. Ed., 31(3), 671-676.
3. 3) Formosa, J., Chimenos, J. M., Lacasta, A. M. and Niubó, M., (2012). “Interaction between low-grade magne-sium oxide and boric acid in chemically bonded phosphate ceramics formulation.” Ceram. Int., 38(3), 2483-2493.
4. 4) Gardner, L. J., Bernal, S. A., Walling, S. A., Corkhill, C. L., Provis, J. L. and Hyatt, N. C., (2015). “Characterization of magnesium potassium phosphate cements blended with fly ash and ground granulated blast furnace slag.” Cem. Concr. Res., 74(3), 78-87.
5. 5) Hafiane, Y., Simith, A. and Bonnet, J. P., (2000). “Electrical characterization of aluminous cement at early ages the 10 Hz-1 GHz frequency range.” Cem. Concr. Res., 30(7), 1057-1062.
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