Kinetic study of titanium-bearing electric arc furnace molten slag treated by molten sodium hydroxide

Q2 Materials Science Minerals & Metallurgical Processing Pub Date : 2017-02-01 DOI:10.19150/MMP.7248
Y. Li, H. Ni, Y. Zhou, D. Li, F. Zheng, M. Zhang, M. Guo
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引用次数: 1

Abstract

In the present work, we investigate the effects of roasting temperature and time on the transformation of the titanium (Ti)-bearing phase and magnesium aluminate spinel (MgAl2O4) phase in Ti-bearing electric arc furnace molten slag during the molten sodium hydroxide (NaOH) treatment process. With applied temperature of 700 °C for 60 min, and a mass ratio of Ti-bearing electric arc furnace slag to NaOH, or Rslag/NaOH, of 1:1.2, the conversion ratios of the Ti-bearing phase and the MgAl2O4 phase reached about 98.3 percent and 88.1 percent, respectively. Moreover, investigation of the reaction kinetics indicate that the conversion of these phases during the molten NaOH treatment process is a typical solid-liquid reaction, and it can be theoretically described by the unreacted shrinking core model. The conversion ratio of the Ti-bearing phase was found to be controlled by the chemical reaction step, with an apparent activation energy of 41.76 kJ/mol. The decomposition of the MgAl2O4 phase was found to be controlled by the surface chemical reaction in the early stage of 0 to 20 min from start of reaction, changing to diffusion control in the later stage of 20 to 60 min. The apparent activation energies of the process were determined as 55.88 and 22.72 kJ/mol, respectively.
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熔融氢氧化钠处理含钛电弧炉熔渣的动力学研究
本文研究了焙烧温度和焙烧时间对含钛电弧炉熔渣中含钛(Ti)相和铝酸镁尖晶石(MgAl2O4)相转变的影响。在温度为700℃、反应时间为60 min、含ti电弧炉渣与NaOH质量比为1:12 .2的条件下,含ti相和MgAl2O4相的转化率分别达到98.3%和88.1%。反应动力学研究表明,在NaOH熔液处理过程中,这些相的转化是典型的固液反应,可以用未反应收缩核模型进行理论描述。发现含钛相的转化率受化学反应步骤控制,表观活化能为41.76 kJ/mol。MgAl2O4相的分解在反应开始后的0 ~ 20 min由表面化学反应控制,在反应开始后的20 ~ 60 min由扩散控制转变为表面化学反应控制,该过程的表观活化能分别为55.88 kJ/mol和22.72 kJ/mol。
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来源期刊
Minerals & Metallurgical Processing
Minerals & Metallurgical Processing 工程技术-矿业与矿物加工
CiteScore
0.84
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: For over twenty-five years, M&MP has been your source for the newest thinking in the processing of minerals and metals. We cover the latest developments in a wide range of applicable disciplines, from metallurgy to computer science to environmental engineering. Our authors, experts from industry, academia and the government, present state-of-the-art research from around the globe.
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