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Non-isothermal Multi-cell Model for pressure swing adsorption process

机译:变压吸附过程的非等温多单元模型

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In the present study, a comprehensive generic model is developed for pressure swing adsorption process. The model overcomes the inadequacy related to frozen solid concept, isothermality assumption etc. and treats them as per physics of adsorption as well as hydrodynamics. Results are presented to show that there is significant adsorption/desorption during pressure changing steps (pressurization, blowdown), which in turn has significant effect on process performance. Hydrogen pressure swing adsorption process demands high purity and recovery, which can be achieved by complex cycle configuration. It has been used as a case study. The model is validated using the reported simulation/experimental data to the extent possible. The present study reports separation of Hydrogen from five-component mixture using a six-bed process. The dynamics of the process were studied and are presented incorporating non-isothermal effects. The model is easily adaptable to different adsorption/desorption kinetics and thermodynamics due to its effective decoupling of bed hydrodynamics from adsorption/desorption. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本研究中,为变压吸附过程开发了一个综合的通用模型。该模型克服了与冻结固体概念,等温假设等相关的不足,并根据吸附物理学和流体力学对其进行了处理。结果表明,在压力变化步骤(加压,排污)过程中存在明显的吸附/解吸,进而对工艺性能产生重大影响。氢气变压吸附工艺要求高纯度和高回收率,这可以通过复杂的循环配置来实现。它已被用作案例研究。使用所报告的仿真/实验数据尽可能地验证模型。本研究报告使用六床工艺将氢从五组分混合物中分离出来。对过程的动力学进行了研究,并提出了非等温效应。该模型由于床层流体动力学与吸附/解吸有效脱钩,因此很容易适应不同的吸附/解吸动力学和热力学。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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