首页> 外文期刊>Journal of Chemical Engineering of Japan >Heat and Mass Transfer Model Approach to Prediction of Separation Performance of Cryogenic Air Separation Plant by Packed Columns with Structured Packing
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Heat and Mass Transfer Model Approach to Prediction of Separation Performance of Cryogenic Air Separation Plant by Packed Columns with Structured Packing

机译:传质传热模型方法预测结构化填料塔式低温空气分离装置的分离性能

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References(20) Cited-By(3) A process simulator for prediction of separation performance of a cryogenic air separation plant by packed columns with structured packing is developed by use of our heat and mass transfer model. The basic equations for the simulation are mass transfer correlations which were proposed in our previous work (Egoshi et al., 2000). Comparison of observed data from a pilot-scale cryogenic air separation plant, which consisted of a 710 mm-diameter high pressure sieve plate column for feed to low pressure column, a 500 mm-diameter low pressure packed column with structured packing for production of pure grade nitrogen and oxygen, and a 380 mm-diameter argon column with structured packing for production of crude argon is made. Predicted concentration profiles in the low pressure column and the ones in the argon column show good agreement with observed data. The effect of liquid feed location, side-cut location, vapor-liquid ratio of the feeds to the low pressure column on purity of the product nitrogen, oxygen and crude argon are also discussed.
机译:参考文献(20)Cited-By(3)利用我们的传热传质模型,开发了一种用于预测低温空气分离设备的分离性能的过程模拟器,该结构分离器采用结构填料填充塔。模拟的基本方程是传质相关性,这是在我们之前的工作中提出的(Egoshi等,2000)。比较来自中试规模的低温空气分离厂的观测数据,该厂由直径为710毫米的高压筛板塔(用于向低压塔供料),直径为500毫米的低压填充塔(具有规整填料)组成制备了380毫米直径的氩气塔和带有规整填料的粗氩生产用的直径为380毫米的氩气塔。低压塔和氩塔中的预测浓度曲线与观测数据显示出良好的一致性。还讨论了液体进料位置,侧切位置,进料至低压塔的进料气液比对产物氮气,氧气和粗氩气纯度的影响。

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