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Thermodynamics of boron removal in slag refining of Fe-Si alloy

机译:Fe-Si合金中渣中硼切除的热力学

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摘要

Two metallurgical purification techniques, namely solvent refining and slag treatment, were combined to remove boron from silicon. Silicon was alloyed with iron and the alloy was subjected to slag treatment by a ternary of CaO-SiO2-Al2O3 at 1600 degrees C (1873 K). Effects of oxygen potential and basicity of slag on boron removal were investigated through changing the SiO2/Al2O3 and CaO/SiO2 ratios, respectively. Results indicate that these two parameters have major effects on partition ratio of boron. A critical oxygen potential value, which yields the highest partition ratio of boron, was calculated as approximately 9 x 10(-18) atm. Partition ratio of boron was normalized with oxygen potential at each slag composition in order to isolate the effect of basicity. Borate capacity values were calculated for different slags and it was shown that this parameter is only a function of temperature and slag composition. The kinetics of boron removal was quantified and the total mass transfer coefficient of boron was calculated as 7.48 x 10(-6) cm/s. (C) 2018 Elsevier B.V. All rights reserved.
机译:两种冶金净化技术,即溶剂精炼和炉渣处理,组合以从硅中除去硼。硅与铁合金合金,将合金通过1600℃(1873k)的CaO-SiO 2-Al2O3的三元处理合金处理。通过改变SiO2 / Al 2 O 3和CaO / SiO2比例,研究了氧气潜力和炉渣碱度对硼去除的影响。结果表明,这两个参数对硼的分区比具有重大影响。产生硼的最高分配比率的临界氧势值计算为约9×10(-18)个ATM。硼的分配比在每个炉渣组合物中具有氧气潜力,以分离碱度的效果。为不同的渣计算硼酸盐容量值,并且显示该参数仅是温度和炉渣组合物的函数。量化硼预热的动力学,并将硼的总传质系数计算为7.48×10(-6)cm / s。 (c)2018年elestvier b.v.保留所有权利。

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