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首页> 外文期刊>Metallurgical and Materials Transactions B >The Effect of Sulfur Concentration in Liquid Iron on Mineral Layer Formation During Coke Dissolution
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The Effect of Sulfur Concentration in Liquid Iron on Mineral Layer Formation During Coke Dissolution

机译:焦炭溶解过程中铁液中硫含量对矿物层形成的影响

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The effects of sulfur concentration in liquid iron on mineral layer development between coke and iron as coke dissolves in a 2 mass pct carbon-iron liquid have been investigated at 1773 K (1500 °C). The initial sulfur in iron concentrations used ranged from 0.006 to 0.049 mass pct. Key findings include that the two-stage dissolution behavior exhibited in the carbon transfer from coke to iron, as reported in a previous study by the authors, at low initial sulfur in iron contents, was also apparent at the higher values used in this study. This two-stage behavior was attributed to a change in the mineral layer density as a result of changes in mineral morphology at the interface. In addition to confirming the two-stage behavior of the carbon-transfer kinetics at the higher sulfur concentration in iron levels, after a period of time, a solid calcium sulfide layer formed on the mineral layer. The sulfide layer formed after approximately 40 minutes, and the proportion of sulfide in the mineral layer increased with increased experimental time and initial sulfur concentration in iron. It was usually found at the iron side of the mineral layer and was associated with calcium-enriched calcium aluminates. Thermodynamic analysis of this layer confirmed that the sulfide is stabilized as the mineral layer is enriched by calcium.
机译:已经研究了在1773 K(1500°C)下,当焦炭溶解在2质量%的碳-铁液体中时,铁液中硫的浓度对焦炭和铁之间矿物层发展的影响。所使用的铁中的初始硫浓度为0.006至0.049质量pct。主要发现包括:作者在先前的研究中报道,在铁含量低的初始硫含量下,从焦炭向铁的碳转移中表现出的两阶段溶解行为在该研究中使用的较高值时也很明显。该两阶段行为归因于界面处矿物形态的变化而导致的矿物层密度的变化。除了确认铁含量较高的硫浓度下碳转移动力学的两阶段行为外,经过一段时间后,在矿物层上形成了固态硫化钙层。大约40分钟后形成了硫化物层,矿物层中硫化物的比例随着实验时间的增加和铁中初始硫浓度的增加而增加。它通常在矿物层的铁侧发现,并与富含钙的铝酸钙有关。该层的热力学分析证实,由于矿物层富含钙,硫化物稳定了。

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