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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


Wollmerstädt, M., Lohmeier, R., Herdegen, V., Schröder, H.-W. and Repke, J.-U. (2013). Influence of drying on the extraction of different processed lignites. European Journal of Lipid Science and Technology. Wiley, 177–184.

Esche, E., Arellano-Garcia, H. and Biegler, L. T. (2013). Optimal operation of a membrane reactor network. AIChE Journal. Wiley, 170–180.

Tong, Z., Marek, A., Hong, W. and Repke, J.-U. (2013). Experimental and Numerical Investigation on Gravity-Driven Film Flow over Triangular Corrugations. Industrial & Engineering Chemistry Research. American Chemical Society (ACS), 15946–15958.

Lohmeier, R., Schröder, H.-W., Repke, J.-U. and Heckmann, H. (2013). Briquetting of Coal Fines for Use in Smelting Reduction Processes. BHM Berg- und Hüttenmännische Monatshefte. Springer Science and Business Media LLC, 451–452.

Bournazou, M. C., Hooshiar, K., Arellano-Garcia, H., Wozny, G. and Lyberatos, G. (2013). Model based optimization of the intermittent aeration profile for SBRs under partial nitrification. Water Research. Elsevier BV, 3399–3410.

Song, S., Esche, E., Stünkel, S., Brinkmann, T., Wind, J., Shishatskiy, S. and Wozny, G. (2013). Energy, Equipment and Cost Savings by Using a Membrane Unit in an Amine-Based Absorption Process for CO2Removal. Chemie Ingenieur Technik. Wiley, 1221–1227.

C., D. C. L., Barz, T., Peñuela, M., Villegas, A., Ochoa, S. and Wozny, G. (2013). Model-based identifiable parameter determination applied to a simultaneous saccharification and fermentation process model for bio-ethanol production. Biotechnology Progress. Wiley, 1064–1082.

Matuschewski, H., Schiffmann, P., Notzke, H., Wolff, T., Schedler, U., Brinkmann, T. and Repke, J.-U. (2013). Pilotversuche in der organophilen Pervaporation: Membran, Modul und Simulationhspace0.167em-hspace0.167emEin Gesamtkonzept. Chemie Ingenieur Technik. Wiley, 1201–1209.

Felix, A., Herdegen, V., Haseneder, R., Härtel, G. and Repke, J.-U. (2013). Analyse des Permeations- und Filtrationsverhaltens keramischer Membranen unter hydrothermalen Bedingungen. Chemie Ingenieur Technik. Wiley, 1228–1236.

Schach, M.-O., Schneider, R., Schramm, H. and Repke, J.-U. (2013). Control Structure Design for CO2-Absorption Processes with Large Operating Ranges. Energy Technology. Wiley, 233–244.

Godini, H. R., Xiao, S., Javso, S., Stünkel, S., Salerno, D., Son, N. X., Song, S. and Wozny, G. (2013). Techno-economic analysis of integrating the methane oxidative coupling and methane reforming processes. Fuel Processing Technology. Elsevier BV, 684–694.

Müller, M., Kasaka, Y., Müller, D., Schomäcker, R. and Wozny, G. (2013). Process Design for the Separation of Three Liquid Phases for a Continuous Hydroformylation Process in a Miniplant Scale. TU Berlin Industrial & Engineering Chemistry Research. American Chemical Society (ACS), 7259–7264.

Esche, E., Müller, D., Song, S. and Wozny, G. (2013). Optimization of a Membrane-Absorption-Hybrid System for Removal of CO2 from OCM Gas. Proceedings of the 6th International Conference on Process Systems Engineering (PSE ASIA), 27.

Schomäcker, R., Arnd, S., Beck, B., Mavlyankariev, S., Horn, R., Schlögl, R., Simon, U., Schubert, H., Berthold, A., Görke, O. and others (2013). Oxidative Coupling of Methane–Still a Challenge for Catalyst Development and Reaction Engineering. New Technologies and Alternative Feedstocks in Petrochemistry and Refining, 111.

Zhang, F., Bonart, H., Habisreuther, P. and Bockhorn, H. (2013). Direct Numerical Simulations of Turbulent Combustion with OpenFOAM. Proceedings of the 26. Deutscher Flammentag, 867-872.

Müller, D., Esche, E. and Wozny, G. (2013). Phase Separation Engineering: Trajectories Through Model Regression for a Hydroformylation Mini-Plant. Proceedings of the 6th International Conference on Process Systems Engineering (PSE ASIA), 27.


Barz, T., Cárdenas, D. C. L., Arellano-Garcia, H. and Wozny, G. (2012). Experimental evaluation of an approach to online redesign of experiments for parameter determination. AIChE Journal. Wiley, 1981–1995.

Börner, J. H., Herdegen, V., Repke, J.-U. and Spitzer, K. (2012). The impact of CO2on the electrical properties of water bearing porous media - laboratory experiments with respect to carbon capture and storage. Geophysical Prospecting. Wiley, 446–460.

Lehmann, B., Schneider, D., Schröder, H.-W., Wollenberg, R. and Repke, J.-U. (2012). Maschinentechnische Beeinflussungsmöglichkeiten des Zerkleinerungsergebnisses bei der Prallzerkleinerung von Gasflammkohlen. Chemie Ingenieur Technik. Wiley, 2210–2214.

Javso, S., Sadjadi, S., Godini, H., Simon, U., Arndt, S., Görke, O., Berthold, A., Arellano-Garcia, H., Schubert, H., Schomäcker, R. and Wozny, G. (2012). Experimental investigation of fluidized-bed reactor performance for oxidative coupling of methane. Journal of Natural Gas Chemistry. Elsevier BV, 534–543.

Lehmann, B., Schröder, H.-W., Wollenberg, R. and Repke, J.-U. (2012). Effect of miscanthus addition and different grinding processes on the quality of wood pellets. Biomass and Bioenergy. Elsevier BV, 150–159.

Othman, M., Hady, L., Repke, J.-U. and Wozny, G. (2012). Introducing sustainability assessment and selection (SAS) into chemical engineering education. Education for Chemical Engineers. Elsevier BV, e118–e124.

Stünkel, S., Trivedi, H., Godini, H.-R., Javso, S., Holst, N., Arndt, S., Steinbach, J. and Schomäcker, R. (2012). Oxidative Coupling of Methane: Process Design, Development and Operation in a Mini-Plant Scale. Chemie Ingenieur Technik. Wiley, 1989–1996.

Lenhart, E., Esche, E., Arellano-Garcia, H. and Biegler, L. (2012). Oxidative Coupling of Methane: Optimal Operating Policies for a Membrane Reactor Network. Chemie Ingenieur Technik. Wiley, 1980–1988.

Litzmann, O., Grützner, T., Hanselmann, P., Heyl, A. and Repke, J.-U. (2012). Veresterung von Chlorocarboxylsäuren durch wässrige Salzsäure - Einflüsse auf die Kinetik und Umsätze. Chemie Ingenieur Technik. Wiley, 2020–2026.

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