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Mathematical Model for Nitrogen Desorption and Decarburization Reaction in Vacuum Degasser

机译:真空脱气机中氮脱碳脱碳反应的数学模型

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摘要

A mathematical model for nitrogen desorption and decarburization reactions in vacuum degasser was developed. The rate controlling step is assumed to be the mass transfer of nitrogen, carbon and oxygen in molten steel and the chemical reaction of N + N = N_2 and C +O = CO. The bath surface and the surface both of the injected Ar gas bubble and CO gas bubble formed inside the bath are considered as the reaction sites. This model was verified by the agreement of the calculated results with the results of small scale experiments for nitrogen desorption and absorption reaction. The following results were obtained by the analysis of a VOD process of commercial scale for degassing of stainless steel by this model. The ratio of reaction rate for nitrogen desorption and decarburization at each reaction site during operation was evaluated. The nitrogen desorption reaction occurs at the CO gas bubble formed inside steel (51%), at bath surface (36%) and injected Ar gas bubble (13%). The decarburization reaction proceeds at bath surface (90%), at CO gas bubble (8%) and at injected gas bubble in (2%).
机译:建立了真空脱气机中氮脱附和脱碳反应的数学模型。速率控制步骤假定为钢水中氮,碳和氧的质量转移以及N + N = N_2和C + O = CO的化学反应。熔池表面和注入的Ar气泡的表面浴内形成的CO气泡被认为是反应部位。通过计算结果与小规模氮脱附和吸收反应实验结果的一致性验证了该模型。通过对该模型进行不锈钢脱气的商业规模VOD工艺分析,获得了以下结果。评估了操作过程中每个反应部位的氮脱附和脱碳反应速率比。氮解吸反应发生在钢内部形成的CO气泡(51%),熔池表面(36%)和注入的Ar气泡(13%)处。脱碳反应在熔池表面(90%),CO气泡(8%)和注入气泡(2%)中进行。

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