AIChE Journal

Cover image for AIChE Journal

October 1993

Volume 39, Issue 10

Pages fmi–fmi, 1581–1739

  1. Masthead

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Masthead (page fmi)

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391001

  2. Fluid Mechanics and Transport Phenomena

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Use of lagrangian statistics to describe slurry transport (pages 1581–1591)

      J. L. Binder and T. J. Hanratty

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391002

    2. Dean vortices in curved tube flow: 5. 3-D MRI and numerical analysis of the velocity field (pages 1592–1602)

      Kun Yong Chung, Georges Belfort, William A. Edelstein and Xianming Li

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391003

    3. Measurements of mass flux in a turbulent liquid flow with a chemical reaction (pages 1611–1620)

      Satoru Komori, Kouji Nagata, Takao Kanzaki and Yasuhiro Murakami

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391005

  3. Separations

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Optimization of the countercurrent moving-bed chromatographic separator (pages 1621–1627)

      Barry B. Fish, Robert W. Carr and Rutherford Aris

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391006

  4. Process Systems Engineering

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Dynamic process modeling with recurrent neural networks (pages 1654–1667)

      Yong You and Michael Nikolaou

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391009

  5. Reactors, Kinetics and Catalysis

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Parametric sensitivity study of a CFD-based coal combustion model (pages 1668–1679)

      Joseph D. Smith, Philip J. Smith and Scott C. Hill

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391010

    2. Analysis of steady-state reaction fronts in a porous medium (pages 1680–1686)

      F. Escobedo and H. J. Viljoen

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391011

  6. Materials, Interfaces and Electrochemical Phenomena

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. A combined heat-transfer analysis of a single-fiber CVD reactor (pages 1687–1696)

      M. Kassemi, S. A. Gokoglu, C. H. Panzarella and L. C. Veitch

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391012

  7. Thermodynamics

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
  8. Errata

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. You have free access to this content
      Errata (page 1720)

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391016

  9. R&D Notes

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review
    1. Kinetics of the reaction of carbon dioxide with aqueous 2-piperidineethanol solutions (pages 1721–1725)

      Shuo Xu, Yi-Wei Wang, Frederick D. Otto and Alan E. Mather

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391017

    2. Gross error detection and stage efficiency estimation in a separation process (pages 1726–1731)

      R. W. Serth, B. Srikanth and S. J. Maronga

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391018

    3. Influence of guest vapor-liquid critical point on hydrate formation conditions (pages 1735–1737)

      V. Bansal, R. L. Christiansen and E. D. Sloan Jr.

      Version of Record online: 17 JUN 2004 | DOI: 10.1002/aic.690391020

  10. Book Review

    1. Top of page
    2. Masthead
    3. Fluid Mechanics and Transport Phenomena
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics and Catalysis
    7. Materials, Interfaces and Electrochemical Phenomena
    8. Thermodynamics
    9. Errata
    10. R&D Notes
    11. Book Review

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