Chemical Engineering and Technology, 1521-4125

Journal

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  1. 2012
  2. Model-Based Process Challenge of an Industrial Ion-Exchange Chromatography Step

    Westerberg, K., Broberg Hansen, E., Degerman, M., Budde Hansen, T. & Bernt Nilsson, 2012, In : Chemical Engineering & Technology. 35, 1, p. 183-190

    Research output: Contribution to journalArticle

  3. Nonlinear Model Predictive Control of a CO2 Post-Combustion Absorption Unit

    Åkesson, J., Laird, C. D., Lavedan, G., Prölss, K., Tummescheit, H., Velut, S. & Zhu, Y., 2012, In : Chemical Engineering & Technology. 35, 3, p. 445-454

    Research output: Contribution to journalArticle

  4. Supporting Design and Control of a Reversed-Phase Chromatography Step by Mechanistic Modeling

    Westerberg, K., Borg, N., Niklas Andersson & Bernt Nilsson, 2012, In : Chemical Engineering & Technology. 35, 1, p. 169-175

    Research output: Contribution to journalArticle

  5. 2009
  6. A Model-Based Approach to Determine the Design Space of Preparative Chromatography

    Degerman, M., Westerberg, K. & Bernt Nilsson, 2009, In : Chemical Engineering & Technology. 32, 8, p. 1195-1202

    Research output: Contribution to journalArticle

  7. Determining Critical Process Parameters and Process Robustness in Preparative Chromatography - A Model-Based Approach

    Degerman, M., Westerberg, K. & Bernt Nilsson, 2009, In : Chemical Engineering & Technology. 32, 6, p. 903-911

    Research output: Contribution to journalArticle

  8. 2008
  9. Designing robust preparative purification processes with high performance

    Degerman, M., Jakobsson, N. & Bernt Nilsson, 2008, In : Chemical Engineering & Technology. 31, 6, p. 875-882

    Research output: Contribution to journalArticle

  10. 2007
  11. Predicting the Displacement of Yogurt by Water in a Pipe Using CFD

    Regner, M., Henningsson, M., Wiklund, J., Östergren, K. & Trägårdh, C., 2007, In : Chemical Engineering & Technology. 30, 7, p. 844-853

    Research output: Contribution to journalArticle

  12. 2005
  13. Aspects of Modeling a preparative ion-exchange step for antibody purification

    Bernt Nilsson, 2005, In : Chemical Engineering & Technology. 28, 11, p. 1367-1374

    Research output: Contribution to journalArticle

  14. Visualization of the drop deformation and break-up process in a high pressure homogenizer

    Innings, F. & Trägårdh, C., 2005, In : Chemical Engineering & Technology. 28, 8, p. 882-891

    Research output: Contribution to journalArticle

  15. 2004
  16. A comparison of the mixing characteristics in single- and two-phase grid-generated turbulent flow systems

    Moghaddas, J. S., Trägårdh, C., Östergren, K. & Johan Revstedt, 2004, In : Chemical Engineering & Technology. 27, 6, p. 662-670

    Research output: Contribution to journalArticle

  17. 2002
  18. Large eddy simulation of flow in stirred vessels

    Johan Revstedt & Fuchs, L., 2002, In : Chemical Engineering & Technology. 25, 4, p. 443-446

    Research output: Contribution to journalArticle

  19. 2001
  20. Simulation of the condensate treatment process in a Kraft pulp mill

    Olsson, J. & Guido Zacchi, 2001, In : Chemical Engineering & Technology. 24, 2, p. 195-203

    Research output: Contribution to journalArticle

  21. 2000
  22. Use of pervaporation-bioreactor hybrid processes in biotechnology

    Frank Lipnizki, Hausmanns, S., Laufenberg, G., Field, R. & Kunz, B., 2000, In : Chemical Engineering and Technology. 23, 7, p. 569-577 9 p.

    Research output: Contribution to journalArticle

  23. 1998
  24. Absorption of NO in an aqueous solution of NaClO2

    Brogren, C., Hans Karlsson & Bjerle, I., 1998, In : Chemical Engineering & Technology. 21, 1, p. 61-70

    Research output: Contribution to journalArticle

  25. 1997
  26. Absorption of NO in an alkaline solution of KMnO4

    Brogren, C., Hans Karlsson & Bjerle, I., 1997, In : Chemical Engineering & Technology. 20, 6, p. 396-402

    Research output: Contribution to journalArticle

  27. 1996
  28. Thermo gravimetric study of calcination of dolomite at pressurised conditions

    Martensson, R. & Bjerle, I., 1996, In : Chemical Engineering & Technology. 19, 4, p. 364-372

    Research output: Contribution to journalArticle

  29. 1995
  30. On-Line mass spectrometer analysis of gasification gas

    Karlegärd, A., Götz, A. & Bjerle, I., 1995, In : Chemical Engineering & Technology. 18, 3, p. 183-192

    Research output: Contribution to journalArticle

  31. 1994
  32. Kinetic studies on high temperature desulphurization of synthesis gas with zinc ferrite

    Karlegärd, A. & Bjerle, I., 1994, In : Chemical Engineering & Technology. 17, 1, p. 21-29

    Research output: Contribution to journalArticle

  33. 1993
  34. Kinetics of coal desulphurization by Acidianus brierleyi

    Olsson, G., Karlsson, L., Olle Holst & Hans Karlsson, 1993, In : Chemical Engineering & Technology. 16, 3, p. 180-185

    Research output: Contribution to journalArticle

  35. 1988
  36. The significance of fly ash in wet-dry scrubbing of SO2

    Petersen, T. & Hans Karlsson, 1988, In : Chemical Engineering & Technology. 11, 1, p. 298-305

    Research output: Contribution to journalArticle

  37. 1987
  38. Tentative modelling of spray-dry scrubbing of SO2

    Hans Karlsson & Klingspor, J., 1987, In : Chemical Engineering & Technology. 10, 1, p. 104-112

    Research output: Contribution to journalArticle