AIChE Journal

Cover image for AIChE Journal

April 2005

Volume 51, Issue 4

Pages 1054–1309

  1. Institute Lecture. Bioengineering, Food, and Natural Products

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
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  2. Fluid Mechanics and Transport Phenomena

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Modeling the mass transfer in solvent-extraction processes with hollow-fiber membranes (pages 1067–1079)

      S. Bocquet, A. Torres, J. Sanchez, G. M. Rios and J. Romero

      Version of Record online: 28 FEB 2005 | DOI: 10.1002/aic.10461

    1. Natural convection of a paramagnetic liquid controlled by magnetization force (pages 1096–1103)

      Syou Maki, Mitsuo Ataka, Toshio Tagawa, Hiroyuki Ozoe and Wasuke Mori

      Version of Record online: 1 MAR 2005 | DOI: 10.1002/aic.10460

  3. Particle Technology and Fluidization

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Particle sizing in dense suspensions with multiwavelength photon migration measurements (pages 1116–1124)

      Sarabjyot Singh Dali, John C. Rasmussen, Yingqing Huang, Ranadhir Roy and Eva M. Sevick-Muraca

      Version of Record online: 23 FEB 2005 | DOI: 10.1002/aic.10370

    1. New description of fluidization regimes (pages 1125–1130)

      R. Andreux, T. Gauthier, J. Chaouki and O. Simonin

      Version of Record online: 3 MAR 2005 | DOI: 10.1002/aic.10380

    2. Experimentally measured shear stress in the standpipe of a circulating fluidized bed (pages 1131–1143)

      Angela Sarra, Aubrey L. Miller and Lawrence J. Shadle

      Version of Record online: 8 MAR 2005 | DOI: 10.1002/aic.10368

  4. Separations

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Analysis and control of heteroazeotropic batch distillation (pages 1144–1157)

      S. Skouras, S. Skogestad and V. Kiva

      Version of Record online: 1 MAR 2005 | DOI: 10.1002/aic.10376

    1. Estimation of the hindered settling function R(ϕ) from batch-settling tests (pages 1158–1168)

      Daniel R. Lester, Shane P. Usher and Peter J. Scales

      Version of Record online: 8 MAR 2005 | DOI: 10.1002/aic.10333

  5. Process Systems Engineering

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Computational issues in hybrid multizonal/computational fluid dynamics models (pages 1169–1177)

      F. Bezzo, S. Macchietto and C. C. Pantelides

      Version of Record online: 23 FEB 2005 | DOI: 10.1002/aic.10383

    1. A candidate to replace PID control: SISO-constrained LQ control (pages 1178–1189)

      Gabriele Pannocchia, Nabil Laachi and James B. Rawlings

      Version of Record online: 3 MAR 2005 | DOI: 10.1002/aic.10373

    2. Process synthesis optimization and flexibility evaluation of air separation cycles (pages 1190–1200)

      Avinash R. Sirdeshpande, Marianthi G. Ierapetritou, Mark J. Andrecovich and Joseph P. Naumovitz

      Version of Record online: 3 MAR 2005 | DOI: 10.1002/aic.10377

  6. Reactors, Kinetics, and Catalysis

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
  7. Materials, Interfaces and Electrochemical Phenomena

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Modeling of calcium oxalate and amorphous silica composite fouling (pages 1214–1220)

      Hong Yu, Roya Sheikholeslami and William O. S. Doherty

      Version of Record online: 28 FEB 2005 | DOI: 10.1002/aic.10397

    1. Reaction-limited aggregation in presence of short-range structural forces (pages 1233–1245)

      Venkataramana Runkana, P. Somasundaran and P. C. Kapur

      Version of Record online: 3 MAR 2005 | DOI: 10.1002/aic.10375

  8. Thermodynamics

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Thermomechanics of the variation of interfaces in heterogeneous lyophobic systems (pages 1246–1257)

      Loïc Coiffard, Valentin A. Eroshenko and Jean-Pierre E. Grolier

      Version of Record online: 1 MAR 2005 | DOI: 10.1002/aic.10371

  9. Bioengineering, Food, and Natural Products

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Distribution of methanol and catalysts between biodiesel and glycerin phases (pages 1274–1278)

      Chuang-Wei Chiu, Michael J. Goff and Galen J. Suppes

      Version of Record online: 8 MAR 2005 | DOI: 10.1002/aic.10385

  10. Environmental and Energy Engineering

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Fast equivalent operational model of tropospheric alkane photochemistry (pages 1297–1303)

      S. W. Wang, S. Balakrishnan and P. Georgopoulos

      Version of Record online: 28 FEB 2005 | DOI: 10.1002/aic.10431

  11. Process Systems Engineering

    1. Top of page
    2. Institute Lecture. Bioengineering, Food, and Natural Products
    3. Fluid Mechanics and Transport Phenomena
    4. Particle Technology and Fluidization
    5. Separations
    6. Process Systems Engineering
    7. Reactors, Kinetics, and Catalysis
    8. Materials, Interfaces and Electrochemical Phenomena
    9. Thermodynamics
    10. Bioengineering, Food, and Natural Products
    11. Environmental and Energy Engineering
    12. Process Systems Engineering
    1. Economic value of precision in the monitoring of linear systems (pages 1304–1309)

      Miguel Bagajewicz, Mariusz Markowski and Andrzej Budek

      Version of Record online: 1 MAR 2005 | DOI: 10.1002/aic.10372

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