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首页> 外文期刊>Metallurgical and Materials Transactions B >Phase Equilibria in Ferrous Calcium Silicate Slags: Part I. Intermediate Oxygen Partial Pressures in the Temperature Range 1200 °C to 1350 °C
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Phase Equilibria in Ferrous Calcium Silicate Slags: Part I. Intermediate Oxygen Partial Pressures in the Temperature Range 1200 °C to 1350 °C

机译:硅酸铁钙渣中的相平衡:第一部分:1200°C至1350°C温度范围内的中间氧分压

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摘要

Ferrous calcium silicate slags are used in primary and secondary metallurgical processes (described by the FeO-Fe2O3-CaO-SiO2 system). Despite the industrial and scientific importance of this system, the phase equilibria have not been fully investigated. Characterization of this slag system is necessary to improve the design and optimization of new and existing metallurgical processes, particularly in relation to fluxing practice and operating temperatures. Experimental methods have been developed to investigate the phase equilibria of these slags involving the equilibration of samples at fixed oxygen partial pressures, rapid quenching, and the analysis of the compositions of solid and liquid phases using electron probe X-ray microanalysis (EPMA) with wavelength dispersive detectors. Liquidus and solidus data are reported for the primary phase fields of spinel, pseudo-wollastonite, and tridymite in the temperature range of 1200 °C to 1350 °C at an oxygen partial pressure of 10?6 atm, and at 1250 °C at an oxygen partial pressure of 10?5 atm. The resulting data have been used to construct liquidus and solidus isotherms in the “FeO”-CaO-SiO2 system directly relevant to industrial processes.
机译:硅酸钙铁渣用于一次和二次冶金过程(由FeO-Fe2 O3 -CaO-SiO2 系统描述)。尽管该系统具有工业和科学重要性,但尚未充分研究相平衡。这种渣系统的特性对于改进新的和现有的冶金工艺的设计和优化是必要的,特别是在助熔实践和操作温度方面。已经开发出实验方法来研究这些炉渣的相平衡,包括在固定的氧气分压下平衡样品,快速淬灭以及使用具有波长的电子探针X射线微分析(EPMA)分析固相和液相的组成色散检测器。报告了在氧分压为10?6 和1250时,在1200°C至1350°C的温度范围内尖晶石,假硅灰石和鳞石英的初生相场的液相线和固相线数据。氧分压为10?5 atm时处于°C。所得数据已用于构建与工业过程直接相关的“ FeO” -CaO-SiO2 系统中的液相线和固相线等温线。

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  • 来源
    《Metallurgical and Materials Transactions B》 |2008年第2期|179-188|共10页
  • 作者单位

    PYROSEARCH - Pyrometallurgical Research Centre The School of Engineering The University of Queensland Brisbane 4072 Australia;

    PYROSEARCH - Pyrometallurgical Research Centre The School of Engineering The University of Queensland Brisbane 4072 Australia;

    PYROSEARCH - Pyrometallurgical Research Centre The School of Engineering The University of Queensland Brisbane 4072 Australia;

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