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冰晶石熔盐介质中铝热还原月壤模拟样钛铁矿
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东北大学材料与冶金学院,东北大学材料与冶金学院,东北大学材料与冶金学院,东北大学材料与冶金学院,东北大学材料与冶金学院,东北大学材料与冶金学院,东北大学材料与冶金学院

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TF651

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国家自然科学基金资助项目( 51322406);教育部新世纪优秀人才支持计划(NCET-13-0107)。


Aluminothermic Reduction of lunar soil simulant Ilmenite in Cryolite Molten Salt Media
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School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University,School of Materials and Metallurgy,Northeastern University

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    摘要:

    以月球资源原位利用为目的,在冰晶石熔盐介质中研究铝热还原钛铁矿制备铝钛铁合金。热力学计算表明,在960℃,铝热还原钛铁矿的相关反应在热力学上可以自发进行。在组成为47.14mass%NaF-42.86mass%AlF3-10mass%?TiO3的960℃冰晶石介质中进行铝热还原,研究还原剂用量和还原时间对合金产物的影响。还原产物经XRF、XRD、SEM和EDS分析结果表明,合金产物中有Al、Ti、Fe和少量Si,产物的主要物相是Al3Ti。随着铝用量的增加,合金产物中Ti的含量逐渐减少,而铁的含量逐渐增加;随着反应时间的延长,产物中Al3Ti的含量增加。在冰晶石熔盐体系中进行铝热还原2h、还原剂用量为理论用量3倍时,铝中钛含量最高可达18.82mass%。低还原剂用量和较长还原时间时,在冰晶石熔盐介质中还原钛铁矿,可实现Ti/Fe分离;还原反应为原子态的铝还原溶解为离子态的Ti4+得到Al-Ti合金。

    Abstract:

    Focused on in-situ utilization of lunar resources, we studied the preparation of aluminum alloy by aluminothermic reduction of ilmenite in molten cryolite media. The standard Gibbs free energy change of aluminothermic reduction of ilmenite are negative at temperature range 0-1500℃. The effects of reductant amount and reaction time on the aluminothermic reduction of ilmenite in 47.14mass%NaF-42.86mass%AlF3-10mass%?TiO3 at 960℃ were studied. The results obtained by XRF, XRD, SEM and EDS analysis show that the products mainly contain Al, Ti, Fe, and little Si, and the main phase of the product is Al3Ti. With the increase of reductant amount, the content of Ti in alloy products decreases, while the content of Fe in alloy products increases. In addition, the content of Al3Ti increases with the increase of reaction time. The highest content of Ti in the alloy obtained by aluminothermic reaction for 2h at 960℃ using three times reductant amount of theoretical amount is up to 18.82 mass%. Fe and Ti can be separated when FeTiO3 aluminothermic reduction was carried using lower reductant amount and higher reduction time. The FeTiO3 aluminothermic reduction reaction takes place between the dissolved Al atom and dissolved FeTiO3 in the Cryolite melt.

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谢开钰,关苹苹,刘爱民,石忠宁,胡宪伟,高炳亮,王兆文.冰晶石熔盐介质中铝热还原月壤模拟样钛铁矿[J].稀有金属材料与工程,2016,45(5):1278~1283.[Xie Kaiyu, Guan Pingping, Liu Aimin, Shi Zhongning, Hu Xianwei, Gao Bingliang, Wang Zhaowen. Aluminothermic Reduction of lunar soil simulant Ilmenite in Cryolite Molten Salt Media[J]. Rare Metal Materials and Engineering,2016,45(5):1278~1283.]
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  • 收稿日期:2014-12-31
  • 最后修改日期:2015-03-30
  • 录用日期:2015-05-13
  • 在线发布日期: 2016-06-02
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