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首页> 外文期刊>Metallurgical and Materials Transactions B >Effects of additives and temperature on dissolution rate and diffusivity of lime in Al2O3-CaO-SiO2 based slags
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Effects of additives and temperature on dissolution rate and diffusivity of lime in Al2O3-CaO-SiO2 based slags

机译:添加剂和温度对石灰在Al2 O3 -CaO-SiO2 基炉渣中的溶解速率和扩散率的影响

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摘要

The dissolution rate of dense lime specimens in calcium aluminosilicate based melts was measured at 1430 °C to 1600 °C in air, using a rotating disk/cylinder technique. The measured dissolution rates were strongly dependent on the rotation speed with the results indicating mass transfer in the slag phase to be a rate-limiting step. At a given rotation speed, the slag chemistry and temperature had strong effects on the dissolution rate. The diffusivity of CaO in the slag was calculated from the dissolution rate and solubility data, using known mass-transfer correlations. Addition of CaF2 MnO x , FeO x , and TiO2 to the slag increased the CaO diffusivity, while SiO2 had an opposite effect. Addition of CaF2 had the strongest effect and increased the diffusivity by a factor of 3 to 5 in the temperature range of 1500 °C to 1600 °C. The deduced activation energy for diffusion of CaO in these slags ranged from about 53 to 246 kJ/mole, depending on the concentration of additives used.
机译:使用转盘/圆筒技术,在1430°C至1600°C的空气中,测量了密实石灰样品在铝硅酸钙基熔体中的溶解速率。测得的溶解速率在很大程度上取决于转速,结果表明在渣相中的传质是一个限速步骤。在给定的转速下,炉渣的化学性质和温度对溶解速率有很大的影响。使用已知的传质相关性,由溶解速率和溶解度数据计算出CaO在炉渣中的扩散率。在炉渣中添加CaF2 MnO x ,FeO x 和TiO2 可以提高CaO的扩散性,而SiO2 具有相反的作用。在1500°C至1600°C的温度范围内,添加CaF2 效果最强,扩散系数提高了3到5倍。根据所用添加剂的浓度,推导的CaO在这些炉渣中扩散的活化能范围约为53至246 kJ / mol。

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  • 来源
    《Metallurgical and Materials Transactions B 》 |2006年第5期| 773-780| 共8页
  • 作者单位

    School of Chemical Engineering and Analytical Science The University of Manchester M60 1QD United Kingdom;

    School of Chemical Sciences and Engineering The University of New South Wales 2052 Sydney NSW Australia;

    School of Material Science and Engineering The University of New South Wales 2052 Sydney NSW Australia;

    the High Temperature Processing research program at CSIRO Minerals 3169 Melbourne Victoria Australia;

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