Hong-ling Zhou, Ke-qin Feng, Chang-hong Chen, and Zi-di Yan, Influence of CeO2 addition on the preparation of foamed glass-ceramics from high-titanium blast furnace slag, Int. J. Miner. Metall. Mater., 25(2018), No. 6, pp. 689-695. https://doi.org/10.1007/s12613-018-1616-5
Cite this article as:
Hong-ling Zhou, Ke-qin Feng, Chang-hong Chen, and Zi-di Yan, Influence of CeO2 addition on the preparation of foamed glass-ceramics from high-titanium blast furnace slag, Int. J. Miner. Metall. Mater., 25(2018), No. 6, pp. 689-695. https://doi.org/10.1007/s12613-018-1616-5
Research Article

Influence of CeO2 addition on the preparation of foamed glass-ceramics from high-titanium blast furnace slag

+ Author Affiliations
  • Corresponding author:

    Ke-qin Feng    E-mail: kqfeng@scu.edu.cn

  • Received: 21 October 2017Revised: 21 February 2018Accepted: 2 March 2018
  • Foamed glass-ceramics doped with cerium oxide (CeO2) were successfully prepared from high-titanium blast furnace slag by one-step sintering. The influence of CeO2 addition (1.5wt%–3.5wt%) on the crystalline phases, microstructure, and properties of foamed glass-ceramics was studied. Results show that CeO2 improves the stability of the glass phase and changes the two-dimensional crystallization mechanism into three-dimensional one. XRD analysis indicates the presence of Ca(Mg, Fe)Si2O6 and Ca(Ti, Mg, Al)(Si, Al)2O6 in all sintered samples. Added with CeO2, TiCeO4 precipitates, and crystallinity increases, leading to increased thickness of pore walls and uniform pores. The comprehensive properties of foamed glass-ceramics are better than that of samples without CeO2. In particular, the sample added with a suitable amount of CeO2 (2.5wt%) exhibits bulk density that is similar to and compressive strength (14.9 MPa) that is more than twice of foamed glass-ceramics without CeO2.
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  • [1]
    J. König, R.R. Petersen, and Y.Z. Yue, Fabrication of highly insulating foam glass made from CRT panel glass, Ceram. Int., 41(2015), No. 8, p. 9793.
    [2]
    M. Reben, M. Kosmal, M. Ziąbka, P. Pichniarczyk, and I. Grelowska, The influence of TiO2 and ZrO2 on microstructure and crystallization behavior of CRT glass, J. Non-Cryst. Solids, 425(2015), p. 118.
    [3]
    M.G. Zhu, R. Ji, Z.M. Li, H. Wang, L.L. Liu, and Z.T. Zhang, Preparation of glass ceramic foams for thermal insulation applications from coal fly ash and waste glass, Constr. Build. Mater., 112(2016), p. 398.
    [4]
    E. Bernardo and F. Albertini, Glass foams from dismantled cathode ray tubes, Ceram. Int., 32(2006), No. 6, p. 603.
    [5]
    J.G. Bai, X.H. Yang, S.C. Xu, W.J. Jing, and J.F. Yang, Preparation of foam glass from waste glass and fly ash, Mater. Lett., 136(2014), p. 52.
    [6]
    Z. Liu, N.N. Shao, D.M. Wang, J.F. Qin, T.Y. Huang, W. Song, M.X. Lin, J.S. Yuan, and Z. Wang, Fabrication and properties of foam geopolymer using circulating fluidized bed combustion fly ash, Int. J. Miner. Metall. Mater., 21(2014), No. 1, p. 89.
    [7]
    H. Sazegaran, A.R. Kiani-Rashid, and J.V. Khaki, Effects of sphere size on the microstructure and mechanical properties of ductile iron-steel hollow sphere syntactic foams, Int. J. Miner. Metall. Mater., 23(2016), No. 6, p. 676.
    [8]
    S. Kapoor, A. Goel, A.F. Correia, M.J. Pascual, H.Y. Lee, H.W. Kim, and J.M. Ferreira, Influence of ZnO/MgO substitution on sintering, crystallisation, and bio-activity of alkali-free glass-ceramics, Mater. Sci. Eng. C, 53(2015), p. 252.
    [9]
    Y. Zhao, D.F. Chen, Y.Y. Bi, and M.J. Long, Preparation of low cost glass-ceramics from molten blast furnace slag, Ceram. Int., 38(2012), No. 3, p. 2495.
    [10]
    H. Shi, K.Q. Feng, H.B. Wang, C.H. Chen, and H.L. Zhou, Influence of aluminium nitride as a foaming agent on the preparation of foam glass-ceramics from high-titanium blast furnace slag, Int. J. Miner. Metall. Mater., 23(2016), No. 5, p. 595.
    [11]
    C.H. Chen, K.Q. Feng, Y. Zhou, and H.L. Zhou, Effect of sintering temperature on the microstructure and properties of foamed glass-ceramics prepared from high-titanium blast furnace slag and waste glass, Int. J. Miner. Metall. Mater., 24(2017), No. 8, p. 931.
    [12]
    W.H. Zheng, J.S. Cheng, L.Y. Tang, J. Quan, and X. Cao, Effect of Y2O3 addition on viscosity and crystallization of the lithium aluminosilicate glasses, Thermochim. Acta, 456(2007), No. 1, p. 69.
    [13]
    F. Soleimani and M. Rezvani, The effects of CeO2 addition on crystallization behavior and pore size in microporous calcium titanium phosphate glass ceramics, Mater. Res. Bull., 47(2012), No. 6, p. 1362.
    [14]
    Q.F. Shu, Z. Wang, J.L. Klug, K. Chou, and P.R. Scheller, Effects of B2O3 and TiO2 on crystallization behavior of some slags in Al2O3–CaO–MgO–Na2O–SiO2 system, Steel Res. Int., 84(2013), No. 11, p. 1138.
    [15]
    Y.F. Lu, Y.G. Du, J.Y. Xiao, C.Y. Zhang, W.J. Zhang, and R.M. Yin, Quantitative analysis of crystal phases in glass-ceramics by X-ray diffraction method, J. Chin. Cream. Soc., 33(2005), No. 12, p. 1488.
    [16]
    S.J. Gao, Preparation and Heat-treatment Schedules of Glass-ceramics with Nickel Smelting De-iron Slag [Dissertation], University of Science and Technology Beijing, Beijing, 2015.
    [17]
    J. Wang, C. Liu, G.K. Zhang, J. Xie, J.J. Han, and X.J. Zhao, Crystallization properties of magnesium aluminosilicate glass-ceramics with and without rare-earth oxides, J. Non-Cryst. Solids, 419(2015), p. 1.
    [18]
    T. Ozawa, Kinetics of non-isothermal crystallization, Polymer, 12(1971), No. 3, p. 150.
    [19]
    J. Cheng, G.H. Chen, X.Y. Liu, and H.R. Xu, Effect of ceria on sintering and properties of CaO–A12O3–SiO2 system glass-ceramics, Chin. J. Nonferrous. Met., 20(2010), No. 3, p. 534.
    [20]
    T.Y. Liu, G.H. Chen, J. Song, and C.L. Yuan, Crystallization kinetics and dielectric characterization of CeO2–added BaO–SrO–Nb2O5–B2O3–SiO2 glass-ceramics, Ceram. Int., 39(2013), No. 5, p. 5553.
    [21]
    H.B. Wang, K.Q. Feng, Y. Zhou, Q.Z. Sun, and H. Shi, Effects of Na2B4O7·5H2O on the properties of foam glass from waste glass and titania-bearing blast furnace slag, Mater. Lett., 132(2014), p. 176.
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