首页> 外文会议>Second Pacific Basin Conference on Adsorption Science and Technology Brisbane, Australia 14-18 May 2000 >Numerical simulation and experimental validation of multiple-layer, non-isothermal, bulk gas pressure swing adsorption
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Numerical simulation and experimental validation of multiple-layer, non-isothermal, bulk gas pressure swing adsorption

机译:多层非等温大体积气体变压吸附的数值模拟与实验验证

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This paper investigates the ability of a detailed numerical model of multiple-layer, non-isothermal, bulk gas pressure swing adsorption processes to match experimental data over a range of operating conditions. The experimental apparatus is a 2-bed, 8-step VSA process for air separation using multiple layers of alumina and CaX zeolite. Input parameters are determined independently of the VSA system and no parameters in the model are adjusted to improve the fit to experimental data. A limited range of system purities and pressure swings are examined to illustrate the ability of the numerical model to capture overall performance. In general good agreement is obtained between the model and the experimental data although accurate modelling requires careful attention to details that influence the thermal behaviour of the process. The numerical model can also represent the unusual temperature profiles characteristic of multiple-layered beds. Overall, while good agreement can be obtained between model and experimentation, accurate design must still rely on experimental work. The model is, however, sufficiently accurate to permit approximate optimisation studies to be performed.
机译:本文研究了多层,非等温,本体气体变压吸附过程的详细数值模型与一系列操作条件下的实验数据相匹配的能力。实验设备是使用多层氧化铝和CaX沸石进行空气分离的2床8步VSA工艺。输入参数的确定与VSA系统无关,并且模型中的任何参数均未进行调整以改善对实验数据的拟合度。检查了有限范围的系统纯度和压力波动,以说明数值模型捕获总体性能的能力。通常,尽管精确的建模需要仔细注意影响过程热行为的细节,但是在模型和实验数据之间会获得良好的一致性。数值模型还可以代表多层床的异常温度分布特征。总体而言,尽管可以在模型和实验之间取得良好的一致性,但准确的设计仍必须依靠实验工作。但是,该模型足够准确,可以执行近似优化研究。

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