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Thermodynamic Analysis and Experimental Study on Reaction of CO2 Gas with Hot Metal

机译:CO2气体与铁水反应的热力学分析与实验研究。

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摘要

The reaction of CO2 gas with hot metal was investigated based on the thermodynamic analysis and experi-mental results.It shows that both silicon and carbon in hot metal can be oxidized by CO2 gas in the temperature range of 1 300-1 500 ℃.When using graphite crucible,temperature has little influence on final mass percent of car-bon w[C] because of the carburization effect.Decarburization degree rises significantly with increasing gas inj ection rate and w[C] can be reduced to 3�2% at most when using MgO crucible.Lower temperature or higher gas inj ection rate is propitious to promote desilication reaction,but only 5%-10% of desilication ratio could be obtained in 20 min. The final mass percent of silicon w[Si] when using MgO crucible is lower than that when using graphite crucible.Ex-perimental results also demonstrate that CO2 injection has no effect on the concentration of manganese,sulfur and phosphorus in hot metal.In view of the weak oxidation ability and temperature drop of hot metal,CO2 gas is sugges-ted to be used as carrier gas in desilication process rather than oxidizing agent.
机译:根据热力学分析和实验结果,研究了CO2气体与铁水的反应。结果表明,在1300〜1500℃的温度范围内,CO2气体可氧化铁水中的硅和碳。使用石墨坩埚,由于渗碳作用,温度对碳的最终质量百分比w [C]几乎没有影响。脱碳度随着气体注入率的增加而显着提高,并且在[w]时w [C]可以降低到3%〜2%。较低温度或更高的气体注入速率有利于促进硅化反应,但在20分钟内只能获得5%-10%的硅化率。使用MgO坩埚的硅w [Si]的最终质量百分比低于使用石墨坩埚的硅的质量百分比。实验结果还表明,注入CO2对铁水中锰,硫和磷的浓度没有影响。考虑到铁水的弱氧化能力和温降,建议将CO2气体用作脱硅过程中的载气而不是氧化剂。

著录项

  • 来源
    《钢铁研究学报(英文版)》 |2016年第2期|98-102|共5页
  • 作者单位

    School of Metallurgy,Northeastern University,Shenyang 110819,Liaoning,China;

    School of Metallurgy,Northeastern University,Shenyang 110819,Liaoning,China;

    School of Metallurgy,Northeastern University,Shenyang 110819,Liaoning,China;

    School of Metallurgy,Northeastern University,Shenyang 110819,Liaoning,China;

    School of Metallurgy,Northeastern University,Shenyang 110819,Liaoning,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:40:15
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