Optimal design of dual-reflux pressure swing adsorption units via equilibrium theory: Process configurations employing heavy gas for pressure swing

被引:18
|
作者
Bhatt, Tushar S. [1 ]
Storti, Giuseppe [2 ]
Denayer, Joeri F. M. [1 ]
Rota, Renato [3 ]
机构
[1] Vrije Univ Brussel, Dept Chem Engn, Pl Laan 2, B-1050 Brussels, Belgium
[2] ETH, Dept Chem & Appl Biosci, Vladimir Prelog Weg 1,HCI F 125, CH-8093 Zurich, Switzerland
[3] Politecn Milan, Chem Mat & Chem Engn Dept Giulio Natta, Via Mancinelli 7, I-20131 Milan, Italy
关键词
Pressure swing adsorption; Dual-reflux; PSA design; Gas separation; Equilibrium theory; Cyclic adsorption process; PSA PROCESS; SIMULTANEOUS REMOVAL; CYCLES; ENRICHMENT; SEPARATION; SIMULATION; RECOVERY; AIR; CO2;
D O I
10.1016/j.cej.2016.11.111
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Dual-reflux pressure swing adsorption process is theoretically capable of completely separating binary feed gas mixtures into two pure species. The pressure of bed to which the binary gas mixture is fed and the type of gas utilized for pressure swing, results in different process cycle configurations, even if the majority of the previous studies of DR-PSA are restricted to two cycle configurations: that employ heavy gas for pressure swing and deliver feed to the bed operated at either high or low pressure. However, the comparative assessment and the optimal operating pressure ratio of these two process cycle configurations are not well-established. We previously reported an optimal design strategy (that identified a triangular operating zone, inside which, complete separation of binary gas mixtures can be achieved) for one such DR-PSA process cycle configuration. In this work, we report an optimal design strategy for another DR-PSA process cycle configuration: feed to low pressure bed and pressure swing using heavy gas. With respect to previous literature, the equilibrium theory based comprehensive tracking of the characteristic curves and shock transitions during constant and non-constant pressure steps of this specific cyclic process revealed distinct constraints, design parameter values and boundary conditions of the triangular operating zone. Additionally, an in-depth comparative assessment of the impact of process variables (adsorbent selectivity, feed gas composition and, operating pressure ratio) on the design parameters (optimal feed injection position and ratio of pure light reflux to feed rate) and a novel selection criterion is discussed for both of these cycle configurations in order to (i) facilitate the choice of appropriate cycle configuration and (ii) identify the optimal high to low operating pressure ratio range. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:385 / 406
页数:22
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