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TU Berlin

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Publications

Following the links below you find a continuously updated publication list of our group. In order to have an overview of our current publications please visit d|b|t|a's page on ResearchGate: Fachgebiet Dynamik und Betrieb technischer Anlagen




Müller, D., Esche, E., Pogrzeba, T., Hamerla, T., Barz, T., Schomäcker, R. and Wozny, G. (2014). Hydroformylation of 1-dodecene in microemulsions: long-term mini-plant operation results. 20th Int. Conf. Process Eng. Chem. Plant Des., 15–23.


Esche, E., Müller, D., Bock, C., Song, S. and Wozny, G. (2013). MINLP Optimization of a Membrane-Absorption-Hybrid System for the Removal of CO2 from OCM Product Gas.


Esche, E., Müller, D. and Wozny, G. (2014). Systematic modeling for optimization.






Reepmeyer, F., Repke, J.-U. and Wozny, G. (2002). Analyse des Anfahrprozesses bei der Reaktivrektifikation. Chemie Ingenieur Technik - CHEM-ING-TECH, 1253-1258.


Hoffmann, A., Ausner, I., Repke, J.-U. and Wozny, G. (2004). Aufreißende Filmströmung auf geneigten Oberflächen. Chemie Ingenieur Technik, 1065 - 1068.


Repke, J.-U. and Klein, A. (2005). Homogeneous azeotropic pressure swing distillation: Continuous and batch process. European Symposium on Computer-Aided Process Engineering-15, 38th European Symposium of the Working Party on Computer Aided Process Engineering. Elsevier, 721 - 726.


Villain, O., Faber, R., Li, P., Repke, J.-U. and Wozny, G. (2005). Three-phase distillation in packed towers: Short-cut modelling and parameter tuning. European Symposium on Computer-Aided Process Engineering-15, 38th European Symposium of the Working Party on Computer Aided Process Engineering. Elsevier, 415 - 420.


Forner, F., Klein, A. and Repke, J.-U. (2005). Trennung homogener Azeotrope mittels Zweidruckrektifikation – Eine Analyse des Betriebsverhaltens. Chemie Ingenieur Technik, 763 - 771.


Repke, J.-U., Forner, F. and Klein, A. (2005). Separation of Homogeneous Azeotropic Mixtures by Pressure Swing Distillation – Analysis of the Operation Performance. Chemical Engineering & Technology, 1151 - 1157.


Hoffmann, C., Esche, E. and Repke, J.-U. (2019). Integration of design and control based on large-scale NLP formulations and an optimal economic NMPC. Computer Aided Chemical Engineering. Elsevier, 125–130.


Hoffmann, C., Weigert, J., Esche, E. and Repke, J.-U. (2019). Parameter estimation for thermodynamic models using an identifiability analysis and subset selection. Computer Aided Chemical Engineering. Elsevier, 583–588.


Forner, F., Meyer, M., Döker, M., Repke, J.-U., Gmehling, J. and Wozny, G. (2006). Comparison of the startup of reactive distillation in packed and tray towers. 16th European Symposium on Computer Aided Process Engineering and 9th International Symposium on Process Systems Engineering. Elsevier, 137 - 142.


Budiarto, T., Weigert, J., Hoffmann, C., Esche, E. and Repke, J.-U. (2019). Evaluation of discretization methods for modeling the chloralkali membrane process. Computer Aided Chemical Engineering. Elsevier, 589–594.


Lukacs, T., Steger, C., Repke, J.-U., Rev, E., Fonyo, Z. and Lelkes, Z. (2006). Design of batch reactive distillation with equilibrium limited consecutive reactions. CHISA 2006 - 17th International Congress of Chemical and Process Engineering


Weigert, J., Esche, E., Hoffmann, C. and Repke, J.-U. (2019). Generation of data-driven models for chance-constrained optimization. Computer Aided Chemical Engineering. Elsevier, 311–316.


Esche, E., Weigert, J., Budiarto, T., Hoffmann, C. and Repke, J.-U. (2019). Optimization under uncertainty based on a data-driven model for a chloralkali electrolyzer cell. Computer Aided Chemical Engineering. Elsevier, 577–582.


Lyubenova, V., Ochoa, S., Repke, J.-U., Ignatova, M. and Wozny, G. (2014). Control of one Stage Bio Ethanol Production by Recombinant Strain. Biotechnology & Biotechnological Equipment, 372-376.


Gómez, M.-T.-D.-P., Ruiz-Carreira, P., Repke, J.-U., Klein, A., Brinkmann, T. and Wozny, G. (2008). Study of a novel heat integrated hybrid pervaporation distillation process: Simulation and experiments. Computer Aided Chemical Engineering


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