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Simulation Study of Two Units of Pressure Swing Adsorption for Producing Oxygen and Nitrogen Simultaneously

机译:两种压力波浪吸附氧化氧和氮的仿真研究

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An investigation on two processes of pressure swing adsorption (PSA) to produce oxygen and nitrogen simultaneously was conducted numerically through exploiting depressurizing and purging gas of each process by each other. Each unit included two bed six step PSA process. The first unit packed with zeolite 13X for oxygen generation, and the second unit packed with carbon molecular sieve (CMS) for nitrogen generation. Three configurations were studied, two process were operated individually, depressurizing and purging gas of each process used by other unit ( no gas vented to atmosphere), and the third configuration was similar to the second configuration except purging gas of the second unit was vented to atmosphere. Configuration three produced oxygen with purity 98% and nitrogen with purity 95% together in comparing with configuration 1, and 2. Configuration 2 produced oxygen with purity over 99% while nitrogen purity dropped dramatically to be lower than its atmospheric purity (78%). Oxygen and nitrogen purity in all configuration improved with increasing the adsorption pressure.
机译:通过利用各种方法的减压和吹扫气体,对产生氧气和氮气和氮气产生氧气和氮气的两种压力挥杆吸附(PSA)的研究。每个单位都包括两张床六步PSA过程。第一单元用沸石13x包装用于氧产生,第二单元与碳分子筛(CMS)填充,用于氮产生。研究了三种配置,单独操作两个过程,其他单位使用的每个方法的减压和吹扫气体(没有气体排出到大气),并且第三构型类似于除第二单元的吹扫气体排出的第二配置大气层。构造三种与纯度98%的氧气产生纯度98%,与纯度95%相比,与构型1和2.构型2产生纯度超过99%,而氮纯度急剧下降至其大气纯度(78%)。随着吸附压力的增加,所有构造的氧气和氮纯度改善。

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