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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 [1]

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Müller, D., Illner, M., Fleck, A., Esche, E., Barz, T., Schomäcker, R. and Wozny, G. (2014). Enabling online-optimization for a multiphase system in a hydroformylation mini-plant [19]. 20th Int. Conf. Process Eng. Chem. Plant Des.

Bock, C., Esche, E., Müller, D. and Wozny, G. (2014). Superstructure Optimization [20]. Technische Universität Berlin Proceedings of the 8th International Conference on Foundations of Computer-Aided Process Design. Elsevier, 267–272.

Esche, E., Müller, D., Tolksdorf, G., Kraus, R. and Wozny, G. (2014). MOSAIC [21]. Proceedings of the 8th International Conference on Foundations of Computer-Aided Process Design. Elsevier, 693–698.

Zhang, F., Bonart, H., Habisreuther, P. and Bockhorn, H. (2014). Direct Numerical Simulation for an Assessment of the Correlation Between Heat Release Rate and Chemiluminescent Species in Turbulent Premixed Flames [22]. Joint meeting of the British and Scandinavian-Nordic Sections of the Combustion Institute, 23-24.

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 [23]. 20th Int. Conf. Process Eng. Chem. Plant Des., 15–23.

Fehse, F., Herdegen, V., Schröder, H.-W. and Repke, J.-U. (2014). Zielgerichtete Einstellung der Körnung und der mechanischen Stabilität von Braunkohlengranulaten [24]. Chemie Ingenieur Technik. Wiley, 318–327.

Rosin, A., Schröder, H.-W. and Repke, J.-U. (2014). Briquetting press as lock-free continuous feeding system for pressurized gasifiers [25]. Fuel. Elsevier BV, 871–878.

Rathsack, P., Kroll, M., Rieger, A., Haseneder, R., Gerlach, D., Repke, J.-U. and Otto, M. (2014). Analysis of high molecular weight compounds in pyrolysis liquids from scrap tires using Fourier transform ion cyclotron resonance mass spectrometry [26]. Journal of Analytical and Applied Pyrolysis. Elsevier BV, 142–149.

Fehse, F., Sperling, A., Herdegen, V., Schröder, H.-W., Naundorf, T. and Repke, J.-U. (2014). Scale-up-Verhalten von Intensivmischern bei der Granulierung von Braunkohlen für die stoffliche Nutzung [27]. Chemie Ingenieur Technik. Wiley, 848–856.

Herdegen, V., Felix, A., Haseneder, R., Repke, J.-U., Leppchen-Fröhlich, K., Prade, I. and Meyer, M. (2014). Sterilization of Medical Products from Collagen by Means of Supercritical CO2 [28]. Chemical Engineering & Technology. Wiley, 1891–1895.

Kraus, R., Fillinger, S., Tolksdorf, G., Minh, D., Merchan-Restrepo, V. and Wozny, G. (2014). Improving Model and Data Integration Using MOSAIC as Central Data Management Platform [29]. Chemie Ingenieur Technik. Wiley, 1130–1136.

Merchan, V., Tolksdorf, G., Kraus, R. and Wozny, G. (2014). Extending Documentation-Based Models towards an Efficient Integration into Commercial Process Simulators [30]. Chemie Ingenieur Technik. Wiley, 1117–1129.

Godini, H., Xiao, S., Kim, M., Holst, N., Javso, S., Görke, O., Steinbach, J. and Wozny, G. (2014). Experimental and model-based analysis of membrane reactor performance for methane oxidative coupling: Effect of radial heat and mass transfer [31]. Journal of Industrial and Engineering Chemistry. Elsevier BV, 1993–2002.

Rosin, A., Schröder, H.-W. and Repke, J.-U. (2014). Konditionierung von Trockenbraunkohle für den kontinuierlichen Eintrag mit einer Dickstoffpumpe in neuartige Druckvergaserreaktoren [32]. Chemie Ingenieur Technik. Wiley, 1706–1715.

Lehmann, B., Schröder, H.-W., Wollenberg, R. and Repke, J.-U. (2014). Brennstoffpellets aus Braunkohlenxylit und Holz: Teil 1 - Trocknungs- und Sorptionsverhalten [33]. Chemie Ingenieur Technik. Wiley, 1269–1274.

Müller, D., Minh, D. H., Merchan, V. A., Arellano-Garcia, H., Kasaka, Y., Müller, M., Schomäcker, R. and Wozny, G. (2014). Towards a novel process concept for the hydroformylation of higher alkenes: Mini-plant operation strategies via model development and optimal experimental design [34]. Chemical Engineering Science. Elsevier BV, 127–138.

Brösigke, G., Repke, J.-U., Herter, A. and Rädle, M. (2014). Experimentelle und theoretische Analyse der dominierenden Wärmetransportmechanismen einer rollenden Kugel auf einer Platte [35]. Chemie Ingenieur Technik. Wiley, 1628–1629.

Esche, E., Müller, D., Kraus, R. and Wozny, G. (2014). Systematic approaches for model derivation for optimization purposes [36]. Chemical Engineering Science. Elsevier BV, 215–224.

Hoyer, M., Zabelt, D., Steudtner, R., Brendler, V., Haseneder, R. and Repke, J.-U. (2014). Influence of speciation during membrane treatment of uranium contaminated water [37]. Separation and Purification Technology. Elsevier BV, 413–421.

Kerber, J. and Repke, J.-U. (2014). Analyse eines Membrankontaktorverfahrens mit dichter Membran für die Biogasaufbereitung [38]. Chemie Ingenieur Technik. Wiley, 1454–1454.

Godini, H., Fleischer, V., Görke, O., Jaso, S., Schomäcker, R. and Wozny, G. (2014). Thermal Reaction Analysis of Oxidative Coupling of Methane [39]. Chemie Ingenieur Technik. Wiley, 1906–1915.

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 [40]. Catalysis Today. Elsevier, 12–22.

Müller, D., Esche, E., C., D. C. L. and Wozny, G. (2014). An algorithm for the identification and estimation of relevant parameters for optimization under uncertainty [41]. Computers & Chemical Engineering. Elsevier, 94–103.


Penteado, A., Esche, E. and Wozny, G. (2015). Implementation of a Customized Gas-Separation Membrane Model into Commercial Flowsheeting Software to Simulate a Hybrid CO2 Removal Process for Oxidative Coupling of Methane [42]. AIChE Annual Meeting

Börner, J.-H., Herdegen, V., Repke, J.-U. and Spitzer, K. (2015). The spectral complex electrical conductivity of the three-phase system sand/pore water/CO<sub>2</sub> at elevated pressures and temperatures [43]. SEG Technical Program Expanded Abstracts 2015, 3129-3133.

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