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547, pp. 1 - 8 (2003)
Simulation of methanol adsorption on Pt/Ru catalysts. Surface Science 452.
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26, pp. 1126 - 1130 (2003)
Dynamic simulation of a low-temperature rectification column as part of an IGCC power plant. Chemical Engineering & Technology 453.
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58 (3-6), pp. 1029 - 1036 (2003)
Molten carbonate fuel cell (MCFC) with internal reforming: model-based analysis of cell dynamics. Chemical Engineering Science 454.
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4, pp. 57 - 58 (2003)
Integrierte Grundoperationen: Reaktivdestillation - gegenwärtiger Stand und weitere Entwicklungsmöglichkeiten. CIT Plus 455.
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37, pp. 268 - 278 (2003)
Moderne Trenn- und Reaktionstechniken: die Reaktivdestillation. Chemie in unserer Zeit 456.
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42 (3), pp. 191 - 200 (2003)
Conceptual design aspects of reactive distillation processes for ideal binary mixtures. Chemical Engineering and Processing 457.
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2 (3-4), pp. 166 - 180 (2002)
Dynamic Modeling and Simulation of a Countercurrent Molten Carbonate Fuel Cell (MCFC) with Internal Reforming. Fuel Cells 458.
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41 (18), pp. 4534 - 4542 (2002)
Pollution prevention through solvent selection and waste minimization. Industrial & Engineering Chemistry Research 459.
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57 (1), pp. 163 - 178 (2002)
Residue curve maps for reactive distillation systems with liquid-phase splitting. Chemical Engineering Science 460.
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26 (10), pp. 1459 - 1471 (2002)
Bifurcation analysis of reactive distillation systems with liquid-phase splitting. Computers & Chemical Engineering 461.
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26 (2-3), pp. 147 - 163 (2002)
Reactive separation of isobutene from C4 crack fractions by catalytic distillation processes. Separation and Purification Technology 462.
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57 (9), pp. 1511 - 1520 (2002)
Synthesis of cylohexanol by three-phase reactive distillation: influence of kinetics on phase equilibria. Chemical Engineering Science 463.
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56 (18), pp. 5239 - 5254 (2001)
A theoretical study of kinetic instabilities in catalytic distillation: Influence of transport limitations inside the catalyst. Chemical Engineering Science 464.
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24 (12), pp. 1223 - 1233 (2001)
Current status of and recent developments in the direct methanol fuel cell. Chemical Engineering & Technology 465.
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77, pp. 174 - 178 (2001)
Use of fuel cells for stationary and moblie applications: System-oriented approach. Przeglad Elektrotechniczny 466.
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82 (1-3), pp. 117 - 129 (2001)
Electrochemical gas absorption in cyclone membrane reactor: analysis of reaction mechanisms and transport phenomena. Chemical Engineering Journal 467.
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56 (2), pp. 333 - 341 (2001)
Dynamics of the direct methanol fuel cell (DMFC): experiments and model-based analysis. Chemical Engineering Science 468.
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3 (3), pp. 347 - 355 (2001)
Analysis of the nonlinear dynamics of a direct methanol fuel cell. Physical Chemistry Chemical Physics 469.
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107 (13), pp. 68 - 72 (2000)
Separation using coupled reactive distillation columns. Chemical Engineering 470.
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477 (2), pp. 97 - 110 (1999)
A model for the liquid feed direct methanol fuel cell. Journal of Electroanalytical Chemistry 471.
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Limiting current behaviour of the direct methanol fuel cell. Electrochimica Acta 472.
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The impact of mass transport and methanol crossover on the direct methanol fuel cell. Journal of Power Sources 473.
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A cyclone flow cell for the investigation of gas-diffusion electrodes. Journal of Applied Electrochemistry 474.
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54 (13-14), pp. 2937 - 2945 (1999)
Design, operation and analysis of a membrane reactor for electrochemical gas purification. Chemical Engineering Science 475.
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54, pp. 2927 - 2936 (1999)
Direct methanol polymer electrolyte fuel cell: analysis of charge and mass transfer in the vapour-liquid-solid system. Chemical Engineering Science 476.
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Multiple reactions in catalytic distillation processes for the production of the fuel oxygenates MTBE and TAME: analysis by rigorous model and experimental validation. Chemical Engineering Science Book (6)
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Integrated Chemical Processes in Liquid Multiphase Systems From Chemical Reaction to Process Design and Operation. De Gruyter, Berlin/Boston (2022), 622 pp.
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Large-Scale Networks in Engineering and Life Sciences. Springer International Publishing, Switzerland (2014), 388 pp.
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Molten Carbonate Fuel Cells: Modeling, Analysis, Simulation, and Control. Wiley-VCH, Weinheim (2007), XVI, 243 pp.
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Power-to-Chemicals: A Superstructure Problem for Sustainable Syngas Production. In: Mathematical Modeling, Simulation and Optimization for Power Engineering and Management, pp. 145 - 168 (Eds. Göttlich, S.; Herty, M.; Milde, A.) (2021)
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Numerical Methods for Coupled Population Balance Systems Applied to the Dynamical Simulation of Crystallization Processes. In: Dynamic Flowsheet Simulation of Solids Processes, pp. 475 - 518 (Ed. Heinrich, S.). Springer International Publishing, Cham (2020)
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Spezielle labortechnische Reaktoren: Wendelrohrreaktor. In: Handbuch Chemische Reaktoren: Grundlagen und Anwendungen der Chemischen Reaktionstechnik, pp. 1 - 33 (Ed. Reschetilowski, W.). Springer-Verlag GmbH Deutschland (2018)
486.
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Porous Electrodes in Bioelectrochemistry. In: Encyclopedia of Interfacial Chemistry: Surface Science and Electrochemistry, pp. 392 - 401. Elsevier (2018)
487.
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Energy Conversion Based on Bio(electro)catalysts. In: Springer Handbook of Electrochemical Energy, pp. 757 - 777 (Eds. Breitkopf, C.; Swider-Lyons, K.). Springer, Berlin, Heidelberg (2017)
488.
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Catalyst Layer Modeling. In: Springer Handbook of Electrochemical Energy, pp. 259 - 285 (Eds. Breitkopf, C.; Swider-Lyons, K.). Springer, Berlin, Heidelberg (2017)
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Benchmarking a Simple Yet Effective Approach for Inferring Gene Regulatory Networks from Systems Genetic Data. In: Gene Network Inference: Verification of Methods for Systems Genetic Data., pp. 33 - 47. Springer, Heidelberg (2013)
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Modeling of Molten Carbonate Fuel Cells. In: Fuel Cell Science and Engineering: Materials, Processes, Systems and Technology, pp. 791 - 817 (Eds. Stolten, D.; Emonts, B.). Wiley-VCH, Weinheim (2012)
491.
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Process Intensification: 1. Fundamentals and Molecular Level. In: Ullmann´s Encyclopedia of Industrial Chemistry, 23 p. (Ed. Elvers, B.). Wiley-VCH, Weinheim (2011)
492.
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Process Intensification: 2. Phase Level. In: Ullmann´s Encyclopedia of Industrial Chemistry, 27 p. (Ed. Elvers, B.). Wiley-VCH, Weinheim (2011)
493.
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Process Intensification: 3. Process Unit Level. In: Ullmann´s Encyclopedia of Industrial Chemistry, 24 p. (Ed. Elvers, B.). Wiley-VCH Verlag, Weinheim (2011)
494.
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Process Intensification: 4. Plant Level. In: Ullmann´s Encyclopedia of Industrial Chemistry, 30 p. (Ed. Elvers, B.). Wiley-VCH, Weinheim (2011)
495.
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Time Dependent Virus Replication in cell Cultures. In: Complex Sciences: First International Conference, Complex 2009, pp. 651 - 656 (Ed. Zhou, J.). Springer, Berlin - Heidelberg (2009)
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Entwicklungslinien der Brennstoffzellentechnologie. In: Die Zukunft der Energie, pp. 223 - 245 (Eds. Gruss, P.; Schüth, F.). C. H. Beck, München (2008)
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Sundmacher, K.; Kienle, A.; Pesch, H. J.; Berndt, J. F.; Huppmann, G.). Wiley-VCH, Weinheim (2007)
Parameter Identification. In: Molten Carbonate Fuel Cells: Modeling, Analysis, Simulation and Control, pp. 75 - 123 (Eds. 498.
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Sundmacher, K.; Kienle, A.; Pesch, H. J.; Berndt, J. F.; Huppmann, G.). Wiley-VCH, Weinheim (2007)
Steady State and Dynamic Process Analysis. In: Molten Carbonate Fuel Cells: Modeling, Analysis, Simulation and Control, pp. 125 - 140 (Eds. 499.
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Efficient distributed power supply with Molten Carbonate Fuel Cells. In: Renewable Resources and Renewable Energy: A Global Challenge, pp. 273 - 287 (Eds. Graziani, M.; Fornasiero, P.). CRC Press, Boca Raton [u.a] (2007)
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Sundmacher, K.; Kienle, A.; Pesch, H. J.; Berndt, J. F.; Huppmann, G.). Wiley-VCH, Weinheim (2007)
MCFC Reference Model. In: Molten Carbonate Fuel Cells: Modeling, Analysis, Simulation and Control, pp. 35 - 62 (Eds.