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RH-KTB顶吹氧吸收及脱碳过程的水模型

Water Modeling on Oxygen Absorption and Decarburization in RH-KTB Process

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【作者】 耿佃桥雷洪刘爱华赫冀成

【Author】 GENG Dian-qiao1,LEI Hong1,LIU Ai-hua2,HE Ji-cheng1(1.Key Laboratory of Electromagnetic Processing of Materials,Ministry of Education,Northeastern University,Shenyang 110004,China;2.School of Materials & Metallurgy,Northeastern University,Shenyang 110004,China.)

【机构】 东北大学材料电磁过程研究教育部重点实验室东北大学材料与冶金学院

【摘要】 为深入了解RH-KTB真空精炼过程的传质现象,建立了与原型1∶5.5的水模型,并利用NaOH-CO2溶液体系考察了不同工艺参数对RH-KTB顶吹氧吸收及脱碳和脱气过程的影响.实验结果表明,增大提升气量和顶吹气量,以及降低顶枪高度均有利于顶吹氧吸收过程的进行;增大提升气量有利于脱碳过程的进行;对于顶吹氧的吸收过程,真空室内液面高度存在一个最佳值;当采取顶枪吹氧操作时,应达到最佳真空度以实现顶吹氧的快速吸收;当关闭顶枪吹氧时,应尽可能提高真空度以加速脱碳.

【Abstract】 To grasp the mass transfer in RH-KTB vacuum refining process,a water modeling was done on the scale of 1:5.5,and the NaOH-CO2 solution system was used to investigate the effects of different process parameters on the oxygen absorption,decarburization and degassing processes.The experimental results showed that either increasing the lifting gas flowrate and top blowing gas flowrate or decreasing the top lance height benefit the absorption rate of top blowing oxygen,while increasing the lifting gas flowrate benefits decarburization.The liquid surface level in the vacuum chamber has an optimum value for the absorption process of oxygen.When blowing oxygen with a top lance,the vacuum degree should reach its optimum value for fast absorption of oxygen.Moreover,when stopping the top blowing oxygen operation,the vacuum degree should be increased as high as possible to accelerate decarburization.

【基金】 国家高技术研究发展计划项目(2009AA03Z530);国家自然科学基金和上海宝钢集团公司联合资助项目(50834010);教育部科学技术研究重点项目(108036);高等学校学科创新引智计划(B07015);中国博士后基金资助项目(20070421065);教育部留学回国人员科研启动基金资助项目(20071108-2);辽宁省科学技术计划项目(2009221007)
  • 【文献出处】 东北大学学报(自然科学版) ,Journal of Northeastern University(Natural Science) , 编辑部邮箱 ,2010年04期
  • 【分类号】TF769.4
  • 【被引频次】2
  • 【下载频次】216
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