Prof. Dr. Hannsjörg Freund

Thomson Researcher ID: P-7232-2015
Scopus Autoren ID: 35236542500



Organisationseinheit


Department Chemie- und Bioingenieurwesen
Professur für Katalytische Reaktoren und Prozesstechnik


Mitarbeit in Forschungsprojekten


(Integrated and intelligent upgrade of carbon sources through hydrogen addition for the steel industry):
i3upgrade: i3upgrade - Integrated and intelligent upgrade of carbon sources through hydrogen addition for the steel industry
Prof. Dr.-Ing. Jürgen Karl
(01.06.2018 - 30.11.2021)

(Energie Campus 2 (EnCN 2) - Speicher, Projektteil B - Speicher mit Marktreife bis 2022):
EnCN 2 - Wasserstoffspeicherung
Prof. Dr. Peter Wasserscheid
(01.01.2017 - 31.12.2021)


Weitere Forschungsaktivitäten


Organisation einer Tagung / Konferenz
Prof. Dr. Christoph Brabec; Prof. Dr. Hannsjörg Freund; Prof. Dr. Reinhard German; Prof. Dr. Veronika Grimm; Prof. Dr. Wolfgang Heiß; Prof. Dr. Roland Ismer; Prof. Dr.-Ing. Jürgen Karl; Prof. Dr. Frauke Liers-Bergmann; Prof. Dr.-Ing. Matthias Luther; Prof. Dr. Alexander Martin; Prof. Dr. Martin März; PD Dr. Karsten Müller; PD Dr. Lars Schewe; Prof. Dr.-Ing. Eberhard Schlücker; Prof. Dr. Martin Schmidt; Prof. Dr. Peter Wasserscheid; Prof. Dr.-Ing. Stefan Will; Prof. Dr. Karl Gregor Zöttl
EnCN-Jahreskonferenz und EnCN Energiepreis
(13.12.2018 - 13.12.2018)


Publikationen (Download BibTeX)

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Kaiser, M., & Freund, H. (2019). A multimodular pseudoheterogeneous model framework for optimal design of catalytic reactors exemplified by methanol synthesis. Chemical Engineering Science, 206, 401-423. https://dx.doi.org/10.1016/j.ces.2019.04.036
Ganzer, G., Daniel, A., & Freund, H. (2019). Detailed geometrical analysis of statistical activity variations in diluted catalyst beds. Chemical Engineering Research & Design, 148, 102-118. https://dx.doi.org/10.1016/j.cherd.2019.05.056
Ganzer, G., & Freund, H. (2019). Kinetic Modeling of the Partial Oxidation of Propylene to Acrolein: A Systematic Procedure for Parameter Estimation Based on Non-isothermal Data. Industrial & Engineering Chemistry Research, 58, 1857-1874. https://dx.doi.org/10.1021/acs.iecr.8b05583
Maußner, J., & Freund, H. (2018). Efficient calculation of constraint back-offs for optimization under uncertainty: A case study on maleic anhydride synthesis. Chemical Engineering Science, 192, 306-317. https://dx.doi.org/10.1016/j.ces.2018.06.079
Xie, M., & Freund, H. (2018). Fast synthesis of optimal chemical reactor networks based on a universal system representation. Chemical Engineering and Processing, 123, 280-290. https://dx.doi.org/10.1016/j.cep.2017.11.011
Busse, C., Freund, H., & Schwieger, W. (2018). Intensification of heat transfer in catalytic reactors by additively manufactured periodic open cellular structures (POCS). Chemical Engineering and Processing, 124, 199-214. https://dx.doi.org/10.1016/j.cep.2018.01.023
Xie, M., & Freund, H. (2018). Optimal reactor design and operation taking catalyst deactivation into account. Chemical Engineering Science, 175, 405-415. https://dx.doi.org/10.1016/j.ces.2017.10.010
Maußner, J., & Freund, H. (2018). Optimization under uncertainty in chemical engineering: Comparative evaluation of unscented transformation methods and cubature rules. Chemical Engineering Science, 183, 329-345. https://dx.doi.org/10.1016/j.ces.2018.02.002
Lämmermann, M., Horak, G., Schwieger, W., & Freund, H. (2018). Periodic open cellular structures (POCS) for intensification of multiphase reactors: Liquid holdup and two-phase pressure drop. Chemical Engineering and Processing, 126, 178-189. https://dx.doi.org/10.1016/j.cep.2018.02.027
Xie, M., & Freund, H. (2018). Rigorous design of multiphase reactors: Identification of optimal conditions for mass transfer limited reactions. Chemical Engineering and Processing, 124, 174-185. https://dx.doi.org/10.1016/j.cep.2017.11.012

Zuletzt aktualisiert 2019-22-01 um 17:48