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首页> 外文期刊>Separation and Purification Technology >An analysis of gas separation processes of HFC-134a from gaseous mixtures with nitrogen—Comparison of two types of gas separation methods, liquefaction and hydrate-based methods, in terms of the equilibrium recovery ratio
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An analysis of gas separation processes of HFC-134a from gaseous mixtures with nitrogen—Comparison of two types of gas separation methods, liquefaction and hydrate-based methods, in terms of the equilibrium recovery ratio

机译:从氮气与气态混合物中分离HFC-134a的气体分离过程-两种气体分离方法(液化法和水合物法)的平衡回收率比较

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摘要

Two types of gas separation methods, using liquefaction and gas hydrate formation, were compared in terms of the equilibrium recovery ratio for the separation of gaseous mixtures of HFC-134a and nitrogen. The equilibrium recovery ratio is defined as the molar ratio of the target component (HFC-134a, in the present case) recovered in the condensed (recovered) phase to that in the feed (vapor) phase under the equilibrium condition. The equilibrium recovery ratio was evaluated based on the phase equilibrium data for liquid-vapor and hydrate-vapor. It was found the equilibrium recovery ratio for HFC-134a is always higher for the hydrate-based separation method than that for the liquefaction separation method for the conditions of a given initial composition and pressure at 278 K or 282 K. In other words, more HFC-134a can be recovered by the hydrate-based separation than the liquefaction separation method for a given feed. The result can be explained by a simple algebraic analysis based on the phase equilibrium relationship. A two-step separation process combining the liquefaction and hydrate-based separation methods can realize the recovery of high-purity HFC-134a under reduced pressure conditions.
机译:就液化HFC-134a和氮气的气体混合物的平衡回收率而言,比较了使用液化和气体水合物形成的两种气体分离方法。平衡回收率定义为在平衡条件下在冷凝(回收)相中回收的目标组分(当前为HFC-134a)与进料(蒸气)相中的摩尔比。基于液体蒸汽和水合物蒸汽的相平衡数据评估平衡回收率。发现在给定的初始组成和压力为278 K或282 K的条件下,基于水合物的分离方法的HFC-134a平衡回收率始终高于液化分离方法的平衡回收率。换句话说,更多对于给定的进料,HFC-134a可以通过水合物分离而不是液化分离方法进行回收。结果可以通过基于相平衡关系的简单代数分析来解释。将液化和基于水合物的分离方法相结合的两步分离过程可以在减压条件下实现高纯度HFC-134a的回收。

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