Heuristics for synthesis and design of pressure-swing adsorption processes

被引:0
|
作者
Pramathesh R. Mhaskar
Arun S. Moharir
机构
[1] IIT Bombay,Department of Chemical Engineering
来源
Adsorption | 2012年 / 18卷
关键词
Heuristics; PSA; Process synthesis; Process design; Simulation;
D O I
暂无
中图分类号
学科分类号
摘要
Simulation based synthesis and design of adsorptive enrichment of CO from tail gas having 51 % CO are presented. The adsorption breakthrough curve simulation using this feed gas composition, helped to provide a starting guess of the adsorption step duration in a pressure-swing adsorption cycle for meeting the purity and recovery targets. Use of smaller bed dimensions facilitated the simulation of many cycles. These simulations helped to decide the operating pressure range, operating temperature, constituent steps of the cycle, their sequence, direction of pressurization of the bed, number of beds in the cycle and the composition of the streams to be used for pressurization and/or rinse and/or purge steps. Only an optimally designed pressure-vacuum-swing adsorption cycle achieves the stiff separation targets of getting an extract having 80 % pure CO at 80 % recovery in a single-stage with an adsorbent that uses physical adsorption and offers CO/CH4 sorption selectivity of just 2.44. Additional simulations are done wherein the bed sizes and velocities are increased to predict the performance of a large-scale unit. These require deciding only the durations of the steps that are finalized from the small-scale unit simulations. These durations were kept fixed and the bed dimensions were varied till the separation targets are obtained for the particular feed rate. The scale-up criteria was matching residence times in the bed. A strategy for treating a feed gas having only 30 % CO is also discussed and a novel concept of cascaded PSA is evaluated using simulations. Some heuristics are evolved from the studies.
引用
收藏
页码:275 / 295
页数:20
相关论文
共 50 条
  • [21] Design of a Two-Step Pulsed Pressure-Swing Adsorption-Based Oxygen Concentrator
    Rao, V. Rama
    Farooq, S.
    Krantz, W. B.
    AICHE JOURNAL, 2010, 56 (02) : 354 - 370
  • [22] Separation of Concentrated Binary Gases by Hybrid Pressure-Swing Adsorption/Simulated-Moving Bed Processes
    Kostroski, Kyle P.
    Wankat, Phillip C.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2009, 48 (09) : 4445 - 4465
  • [23] Design of a dynamical hybrid observer for pressure swing adsorption processes
    Fakhroleslam, Mohammad
    Boozarjomehry, Ramin Bozorgmehry
    Fatemi, Shohreh
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2017, 42 (33) : 21027 - 21039
  • [24] Semicontinuous, pressure-swing distillation
    Phimister, JR
    Seider, WD
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2000, 39 (01) : 122 - 130
  • [25] Gas Purification by Pressure-Swing Adsorption. Process Analysis.
    Tondeur, D.
    Migault, G.
    Wankat, P.C.
    Entropie Paris, 1985, 21 (123): : 39 - 55
  • [26] INTENSIFICATION OF PRESSURE SWING ADSORPTION PROCESSES
    ROTA, R
    WANKAT, PC
    AICHE JOURNAL, 1990, 36 (09) : 1299 - 1312
  • [27] ADSORBENTS FOR PRESSURE SWING ADSORPTION PROCESSES
    SCHOLLNER, R
    ZEITSCHRIFT FUR CHEMIE, 1987, 27 (03): : 108 - 108
  • [28] Design and control of a pressure-swing distillation process with vapor recompression
    Luyben, William L.
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2018, 123 : 174 - 184
  • [29] Hollow-fiber-based adsorbers for gas separation by pressure-swing adsorption
    Feng, XS
    Pan, CY
    McMinis, CW
    Ivory, J
    Ghosh, D
    AICHE JOURNAL, 1998, 44 (07) : 1555 - 1562
  • [30] Adsorption and Desorption Behaviors of Ammonia on Zeolites at 473 K by the Pressure-Swing Method
    Tokushige, Manabu
    Ryu, Junichi
    ACS OMEGA, 2023, 8 (36): : 32536 - 32543