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Fe2O3-CaO-TiO2 体系下铁酸钙的合成过程及TiO2 CaTiO3 的影响
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1.东北大学 冶金学院,辽宁 沈阳 110819;2.辽宁省冶金资源循环科学重点实验室,辽宁 沈阳 110819;3.中科院金属研究所,辽宁 沈阳 110819;4.河钢承钢,河北 承德 067102;5.鞍钢集团北京研究院,北京 102200

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基金项目:

National Natural Science Foundation of China (Grant No. U1908226, No. 51674084 and No. 21908020);Fundamental Research Funds for the Central Universities (Grant No. N182503035)


Synthesized Process of Calcium Ferrite and Effect of TiO2 and CaTiO3 in Fe2O3-CaO-TiO2 System
Author:
Affiliation:

1.School of Metallurgy, Northeastern University, Shenyang 110819, China;2.Liaoning Key Laboratory of Recycling Science for Metallurgical Resources, Shenyang 110819, China;3.Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110819, China;4.HBIS Group ChengSteel, Chengde 067102, China;5.Ansteel Beijing Research Institute, Beijing 102200, China

Fund Project:

National Natural Science Foundation of China (U1908226, 51674084, 21908020); Fundamental Research Funds for the Central Universities (N182503035)

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    摘要:

    为了确定高钛型钒钛磁铁矿烧结过程中铁酸钙的生成是受TiO2还是TiO2和CaO形成的CaTiO3影响,首先利用Fe2O3和CaO的纯试剂合成了铁酸钙,并研究了TiO2和CaTiO3对钛铁酸钙 (FCT) 形成的影响。在Factsage 7.0软件进行热力学计算的基础上,通过在空气气氛下进行烧结,获得了在1023~1423 K温度范围内、不同烧结时间的不同样品。通过X射线衍射和扫描电镜-能谱分析等表征手段,对烧结样品的物相转变和微观结构变化进行了表征。发现FCT的形成过程主要分为2个阶段:前一阶段为1023~1223 K温度范围内Fe2O3与CaO之间的反应,合成产物为Ca2Fe2O5,反应方程式为“Fe2O3(s)+ 2CaO(s)= Ca2Fe2O5(s)”;后一阶段为1223~1423 K温度范围内Ca2Fe2O5和Fe2O3的反应,主要产物为CaFe2O4,反应为“Ca2Fe2O5(s)+ Fe2O3(s)= 2CaFe2O4(s)”,该阶段尤其是温度为1423 K时,反应速率显著加快,随温度的升高CaTiO3显著增加。然而,Ti元素在铁酸钙中的固溶很难实现,TiO2与铁酸钙之间的反应不是形成FCT的有效途径。随着保温时间的延长,CaTiO3和FCT相界中Fe元素含量增加。FCT主要是通过Fe组分在CaTiO3中固溶形成的,主要反应是“Fe2O3+CaTiO3(s)=FCT(s)”。

    Abstract:

    In order to investigate the phenomenon that the affecting mechanism of high-titanium vanadium-titanium magnetite is caused by separate TiO2 or by CaTiO3 formed from TiO2 and CaO, calcium ferrite was synthetized by pure reagents of Fe2O3 and CaO, and the effect of TiO2 and CaTiO3 on the formation mechanism of titanium calcium ferrite (FCT) was researched. Different samples were sintered at the temperatures of 1023~1423 K for different time under air atmosphere based on thermodynamics calculations with Factsage 7.0. The phase transformation and microstructure changes in sintered samples were examined through different characterization means including X-ray diffraction and scanning electron microscope-energy disperse spectroscopy. It is found that the formation process of calcium ferrite can be mainly divided into two stages. The synthesized product is Ca2Fe2O5 with the reaction “Fe2O3 (s) + 2CaO (s) = Ca2Fe2O5 (s)” between Fe2O3 and CaO at 1023~1223 K in the former stage, and the predominant product is CaFe2O4 with the reaction “Ca2Fe2O5 (s) + Fe2O3 (s) = 2CaFe2O4 (s)” between Ca2Fe2O5 and Fe2O3 at 1223~1423 K in the latter stage, in which the reaction rate is accelerated especially at 1423 K. It is observed that CaTiO3 increases with increasing the temperature. However, the solid solution of Ti element in calcium ferrite is greatly difficult to realize and the reaction between TiO2 and calcium ferrite is not an effective way to generate FCT. It is also observed that the amount of Fe element in the phase boundary of CaTiO3 and FCT increases with the extension of the thermal insulation time. FCT is predominantly formed through the solid solution of Fe component in CaTiO3, and the main reaction is “Fe2O3 (s) + CaTiO3 (s) = FCT (s)”.

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程功金,周新磊,高明磊,常富增,滕艾均,邢振兴,宋翰林,高子先,汤卫东,赵备备,王金龙,赵丹,刘超,李兰杰,杨合,陈东辉,薛向欣,白瑞国,张卫军.Fe2O3-CaO-TiO2 体系下铁酸钙的合成过程及TiO2 CaTiO3 的影响[J].稀有金属材料与工程,2021,50(6):1990~1998.[Cheng Gongjin, Zhou Xinlei, Gao Minglei, Chang Fuzeng, Teng Aijun, Xing Zhenxing, Song Hanlin, Gao Zixian, Tang Weidong, Zhao Beibei, Wang Jinlong, Zhao Dan, Liu Chao, Li Lanjie, Yang He, Chen Donghui, Xue Xiangxin, Bai Ruiguo, Zhang Weijun. Synthesized Process of Calcium Ferrite and Effect of TiO2 and CaTiO3 in Fe2O3-CaO-TiO2 System[J]. Rare Metal Materials and Engineering,2021,50(6):1990~1998.]
DOI:10.12442/j. issn.1002-185X.20200655

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  • 收稿日期:2020-09-01
  • 最后修改日期:2020-12-18
  • 录用日期:2020-12-22
  • 在线发布日期: 2021-07-07
  • 出版日期: 2021-06-30