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High-pressure distillation: Simultaneous impact of pressure, temperature and loading on separation performance during distillation of high-purity gases in high-performance randomly-packed columns

机译:高压蒸馏:在高性能随机填充塔中蒸馏高纯度气体时,压力,温度和负载对分离性能的同时影响

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The paper deals with the effect of operating conditions on small-scale randomly-packed column separation performance during distillation of high-purity liquefied gases under elevated pressure (up to 25 x 10~5 Pa). Examination of mass-transfer performance under elevated pressure at a fixed distance from flood has been made for high-performance spiral-prismatic packings of 4 mm and 2 mm nominal size using silane- and ammonia-based test systems. Impact of simultaneously changing pressure, temperature and flow rates (loading kept at 80% of flooding) on the column separation efficiency has been investigated experimentally and by numerical simulation: variations of steady-state column separation factor and the height equivalent to a theoretical plate (HETP) at total reflux conditions are presented and discussed. Observations made demonstrate that overall column separation efficiency shows an extreme behavior - maximum separation effect is achieved under certain temperature (pressure) depending on the variation of the HETP and vapor-liquid equilibrium of the matrix-impurity system. Dependencies obtained are similar both for ammonia- and for silane-based systems and are in agreement with those predicted by analytical method based on empirical correlative approach found in the literature.
机译:本文探讨了在高压(最高25 x 10〜5 Pa)下蒸馏高纯度液化气过程中操作条件对小规模随机装柱分离性能的影响。使用基于硅烷和氨的测试系统,对公称尺寸为4 mm和2 mm的高性能螺旋棱柱填料进行了在高压下,距洪水一定距离处的传质性能测试。已经通过实验和数值模拟对压力,温度和流速同时变化(负荷保持在注水量的80%)对色谱柱分离效率的影响进行了研究:稳态色谱柱分离系数的变化和高度等于理论塔板数(介绍并讨论了全回流条件下的HETP)。观察到的结果表明,总的色谱柱分离效率显示出一种极端的行为-根据HETP的变化和基质杂质系统的气液平衡,在一定温度(压力)下可获得最大的分离效果。对于氨和基于硅烷的系统,所获得的依赖性相似,并且与文献中基于经验相关方法的分析方法所预测的依赖性相一致。

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