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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 [1]

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C

Kohrt, M., Ausner, I., Wozny, G. and Repke, J.-U. (2011). Texture influence on liquid-side mass transfer [19]. Chemical Engineering Research and Design. Elsevier BV, 1405–1413.


Lausch, H.-R., Wozny, G., Wutkewicz, M. and Wendeler, H. (1998). Plant-Wide Control of an Industrial Process [20]. Chemical Engineering Research and Design. Elsevier BV, 185–192.


Leuner, H., Gerstenberg, C., Lechner, K., McHardy, C., Rauh, C. and Repke, J.-U. (2020). Overcoming unwanted foam in industrial processes of the chemical and food industry textendash an ongoing survey [21]. Chemical Engineering Research and Design. Elsevier BV, 281–294.


Lorenz, H.-M., Otte, D., Staak, D. and Repke, J.-U. (2015). Increasing the efficiency of existing complex downstream processes by plant-wide retrofit [22]. Chemical Engineering Research and Design. Elsevier BV, 199–207.


Javso, S., Arellano-Garcia, H. and Wozny, G. (2011). Oxidative coupling of methane in a fluidized bed reactor: Influence of feeding policy, hydrodynamics, and reactor geometry [23]. Chemical Engineering Journal. Elsevier BV, 255–271.


Meschke, K., Hofmann, R., Haseneder, R. and Repke, J.-U. (2020). Membrane treatment of leached mining waste textendash A potential process chain for the separation of the strategic elements germanium and rhenium [24]. Chemical Engineering Journal. Elsevier BV, 122476.


Bock, H., Wozny, G. and Gutsche, B. (1997). Design and control of a reaction distillation column including the recovery system [25]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 101–109.


Faber, R., Arellano-Garcia, H., Li, P. and Wozny, G. (2007). An optimization framework for parameter estimation of large-scale systems [26]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 1085–1095.


Forner, F., Brehelin, M., Rouzineau, D., Meyer, M. and Repke, J.-U. (2008). Startup of a reactive distillation process with a decanter [27]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 1976–1985.


Godini, H., Xiao, S., Kim, M., Görke, O., Song, S. and Wozny, G. (2013). Dual-membrane reactor for methane oxidative coupling and dry methane reforming: Reactor integration and process intensification [28]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 153–164.


Varbanov, P., Klein, A., Repke, J.-U. and Wozny, G. (2008). Minimising the startup duration for mass- and heat-integrated two-column distillation systems: A conceptual approach [29]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 1456–1469.


Li, P., Löwe, K., Arellano-Garcia, H. and Wozny, G. (2000). Integration of simulated annealing to a simulation tool for dynamic optimization of chemical processes [30]. Chemical Engineering and Processing: Process Intensification. Elsevier BV, 357–363.


Godini, H. R., Khadivi, M., Azadi, M., Görke, O., Jazayeri, S. M., Thum, L., Schomäcker, R., Wozny, G. and Repke, J.-U. (2020). Multi-Scale Analysis of Integrated C1 (CH4 and CO2) Utilization Catalytic Processes: Impacts of Catalysts Characteristics up to Industrial-Scale Process Flowsheeting, Part I: Experimental Analysis of Catalytic Low-Pressure CO2 to Methanol Conversion [31]. Catalysts. MDPI AG, 505.


Godini, H. R., Azadi, M., Khadivi, M., Schomäcker, R., Gallucci, F., Wozny, G. and Repke, J.-U. (2020). Multi-Scale Analysis of Integrated C1 (CH4 and CO2) Utilization Catalytic Processes: Impacts of Catalysts Characteristics up to Industrial-Scale Process Flowsheeting, Part II: Techno-Economic Analysis of Integrated C1 Utilization Process Scenarios [32]. Catalysts. MDPI AG, 488.


Godini, H., Gili, A., Görke, O., Arndt, S., Simon, U., Thomas, A., Schomäcker, R. and Wozny, G. (2014). Soltextendashgel method for synthesis of MntextendashNa2WO4/SiO2 catalyst for methane oxidative coupling [33]. Catalysis Today. Elsevier, 12–22.


Kamp, E., Thielert, H., Morstein, O. v., Kureti, S., Schreiter, N. and Repke, J.-U. (2020). Investigation on the simultaneous removal of COS, CS2 and O2 from coke oven gas by hydrogenation on a Pd/Al2O3 catalyst [34]. Catalysis Science & Technology. Royal Society of Chemistry (RSC), 2961–2969.


B

Lyubenova, V., Ochoa, S., Repke, J., Ignatova, M. and Wozny, G. (2007). Control of one Stage Bio Ethanol Production by Recombinant Strain [35]. Biotechnology & Biotechnological Equipment. Informa UK Limited, 372–376.


Ochoa, S., Yoo, A., Repke, J.-U., Wozny, G. and Yang, D. (2007). Modeling and Parameter Identification of the Simultaneous Saccharification-Fermentation Process for Ethanol Production [36]. Biotechnology Progress. Wiley, 1454–1462.


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 [37]. Biotechnology Progress. Wiley, 1064–1082.


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 [38]. Biomass and Bioenergy. Elsevier BV, 150–159.


Ochoa, S., Repke, J.-U. and Wozny, G. (2010). Integrating real-time optimization and control for optimal operation: Application to the bio-ethanol process [39]. Biochemical Engineering Journal. Elsevier BV, 18–25.


A

Li, P., Wendt, M. and Wozny, G. (2002). A probabilistically constrained model predictive controller [40]. Automatica. Elsevier BV, 1171–1176.


Chen, L., Repke, J.-U. and Wang, S. (2011). Flow pattern identification for three-phase distillation with a nonequilibrium modeling [41]. Asia-Pacific Journal of Chemical Engineering. Wiley, 349–356.


Klein, A. and Repke, J.-U. (2009). Regular and inverted batch process structures for pressure swing distillation: a case study [42]. Asia-Pacific Journal of Chemical Engineering. Wiley, 893–904.


Brösigke, G., Herter, A., Rädle, M. and Repke, J.-U. (2018). Direct Numerical Simulation of conjugated heat transfer between a spherical particle rolling over a planar surface [43]. Applied Thermal Engineering. Elsevier BV, 456–463.


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