AIChE Journal

Cover image for AIChE Journal

January 2004

Volume 50, Issue 1

Pages 2–259

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      The start of the 50th year! (pages 2–3)

      Stanley I. Sandler

      Version of Record online: 21 JAN 2004 | DOI: 10.1002/aic.10000

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      Mathematics in chemical engineering: A 50 year introspection (pages 7–23)

      Doraiswami Ramkrishna and Neal R. Amundson

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10002

  1. Fluid Mechanics and Transport Phenomena

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      Mechanism of mass-transfer enhancement in textiles by ultrasound (pages 58–64)

      Vijayanand S. Moholkar, Marijn M. C. G. Warmoeskerken, Claus Dieter Ohl and Andrea Prosperetti

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10005

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      Mass transfer between flowing fluid and sphere buried in packed bed of inerts (pages 65–74)

      J. R. F. Guedes de Carvalho, J. M. P. Q. Delgado and M. A. Alves

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10006

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      Characterization of trailing vortices generated by a Rushton turbine (pages 75–86)

      Renaud Escudié, Denis Bouyer and Alain Liné

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10007

  2. Particle Technology and Fluidization

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      Separation characteristics of swirl-tube dust separators (pages 87–96)

      Weiming Peng, Alex C. Hoffmann and Huub Dries

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10008

  3. Separations

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      Vacuum drying of wood with radiative heating: I. Experimental procedure (pages 97–107)

      Patrick Perré, Stéphane Mosnier and Ian W. Turner

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10009

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      Separation of CO2/N2 mixtures using MFI-type zeolite membranes (pages 127–135)

      M. P. Bernal, J. Coronas, M. Menéndez and J. Santamaría

      Version of Record online: 22 JAN 2004 | DOI: 10.1002/aic.10012

  4. Process Systems Engineering

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
    1. Inferential product quality control of a multistage batch plant (pages 136–148)

      Jay H. Lee, Andrew W. Dorsey and Stephen Russell

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10013

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      A novel interval-halving framework for automated identification of process trends (pages 149–162)

      Sourabh Dash, Mano Ram Maurya, Venkat Venkatasubramanian and Raghunathan Rengaswamy

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10014

  5. Reactors, Kinetics, and Catalysis

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      Effect of radial temperature profiles on yields in steam cracking (pages 173–183)

      K. M. Van Geem, G. J. Heynderickx and G. B. Marin

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10016

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      New design for efficient diesel particulate trap regeneration (pages 184–191)

      Haishan Zheng and Jason M. Keith

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10017

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      Kinetics of cellulose conversion at 25 MPa in sub- and supercritical water (pages 192–202)

      Mitsuru Sasaki, Tadafumi Adschiri and Kunio Arai

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10018

  6. Thermodynamics

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      PSRK method for gas hydrate equilibria: I. Simple and mixed hydrates (pages 203–214)

      Ji-Ho Yoon, Yoshitaka Yamamoto, Takeshi Komai and Taro Kawamura

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10019

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  7. Materials, Interfaces, and Electrochemical Phenomena

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
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      Coupled mesoscale—continuum simulations of copper electrodeposition in a trench (pages 226–240)

      Timothy O. Drews, Eric G. Webb, David L. Ma, Jay Alameda, Richard D. Braatz and Richard C. Alkire

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10021

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      Electric-field generation by gas–solid combustion (pages 241–248)

      K. S. Martirosyan, I. A. Filimonov and Dan Luss

      Version of Record online: 23 JAN 2004 | DOI: 10.1002/aic.10022

  8. Bioengineering, Food, and Natural Products

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
    1. You have free access to this content
  9. Process Systems Engineering

    1. Top of page
    2. Fluid Mechanics and Transport Phenomena
    3. Particle Technology and Fluidization
    4. Separations
    5. Process Systems Engineering
    6. Reactors, Kinetics, and Catalysis
    7. Thermodynamics
    8. Materials, Interfaces, and Electrochemical Phenomena
    9. Bioengineering, Food, and Natural Products
    10. Process Systems Engineering
    1. You have free access to this content

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