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Influence of aluminium nitride as a foaming agent on the preparation of foam glass-ceramics from high-titanium blast furnace slag 被引量:9

Influence of aluminium nitride as a foaming agent on the preparation of foam glass-ceramics from high-titanium blast furnace slag
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摘要 To effectively reuse high-titanium blast furnace slag (TS), foam glass-ceramics were successfully prepared by powder sintering at 1000℃. TS and waste glass were used as the main raw materials, aluminium nitride (AIN) as the foaming agent, and borax as the fluxing agent. The influence of the amount of A1N added (lwt%-5wt%) on the crystalline phases, microstructure, and properties of the produced foam glass-ceramics was studied. The results showed that the main crystal phases were perovskite, diopside, and augite. With increasing A1N content, a transformation from diopside to augite occurred and the crystallinity of the pyroxene phases slightly decreased. Initially, the aver- age pore size and porosity of the foam glass-ceramics increased and subsequently decreased; similarly, their bulk density and compressive strength decreased and subsequently increased. The optimal properties were obtained when the foam glass-ceramics were prepared by adding 4wt% AIN. To effectively reuse high-titanium blast furnace slag (TS), foam glass-ceramics were successfully prepared by powder sintering at 1000℃. TS and waste glass were used as the main raw materials, aluminium nitride (AIN) as the foaming agent, and borax as the fluxing agent. The influence of the amount of A1N added (lwt%-5wt%) on the crystalline phases, microstructure, and properties of the produced foam glass-ceramics was studied. The results showed that the main crystal phases were perovskite, diopside, and augite. With increasing A1N content, a transformation from diopside to augite occurred and the crystallinity of the pyroxene phases slightly decreased. Initially, the aver- age pore size and porosity of the foam glass-ceramics increased and subsequently decreased; similarly, their bulk density and compressive strength decreased and subsequently increased. The optimal properties were obtained when the foam glass-ceramics were prepared by adding 4wt% AIN.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2016年第5期595-600,共6页 矿物冶金与材料学报(英文版)
基金 the Science and Technology Support Projects of Sichuan Province (No. 2014GZ0011) the Industry Promotion Projects of Panzhihua in China (No.2013CY-C-2) for their financial support
关键词 blast furnace slag aluminium nitride powder sintering foam GLASS-CERAMICS CRYSTALLIZATION blast furnace slag aluminium nitride powder sintering foam glass-ceramics crystallization
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  • 1L. Zhang, L.N. Zhang, M.Y. Wang, G.Q. Li, and Z.T. Sui, Recovery of titanium compounds from molten Ti-bearing blast furnace slag under the dynamic oxidation condition, Miner. Eng., 20(2007), No. 7, p. 684.
  • 2N. E1-Hazek, T.A. Lasheen, R. El-Sheikh, and S.A. Zaki, Hydrometallurgical criteria for TiO2 leaching from Rosetta ilmenite by hydrochloric acid, Hydrometallurgv, 87(2007), No. 1-2, p. 45.
  • 3F. Valighazvini, F. Rashchi, and R. Khayyam Nekouei, Re- covery of titanium from blast furnace slag, Ind. Eng. Chem. Res., 52(2013), No. 4, p. 1723.
  • 4Y. 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.
  • 5J. Partyka and M. Leniak, Raman and infrared spectroscopy study on structure and microstrucWxe of glass-ceramic mate- rials from SiO2-A1203-Na20--K20-CaO system modified by variable molar ratio of SIO2/A1203, Spectrochim. Acta A, 152(2016), p. 82.
  • 6Z.H. Yang, Q. Lin, S.C. Lu, Y. He, G.D. Lian, and Y. Ke, Effect of CaO/SiO2 ratio on the preparation and crystalliza- tion of glass-ceramics from copper slag, Ceram. Int., 40(2014), No. 5, p. 7297.
  • 7S. Kapoor, A. Goel, A.F. Correia, M.J. Pascual, H.Y. Lee, H.W. Kim, and J.M. Ferreira, Influence of ZnO/MgO substi- tution on sintering, erystallisation, and bio-activity of al- kali-free glass-ceramics, Mater. Sci. Eng. C, 53(2015), p. 252.
  • 8M. Reben, M. Kosmal, M. Zitbka, P. Pichniarczyk, and I. Grelowska, The influence of TiO2 and ZrO2 on microstruc- ture and crystallization behavior of CRT glass, J. Non Cryst. Solids, 425(2015), p. 118.
  • 9V. Ducman and M. Kova6evi6, The foaming of waste glass, Key Eng. Mater., 132-136(1997), p. 2264.
  • 10M. Scheffier and P. Colombo, Cellular Ceramics: Structure, Manufacturing, Properties and Applications, Wiley-VCH, Weinheim, 2005, p. 158.

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