Lehrstuhl Fluidverfahrenstechnik der Ruhr-Universität Bochum

Postanschrift

Ruhr-Universität Bochum
Fluidverfahrenstechnik (PF22)
Universitätsstraße 150
44801 Bochum

So finden Sie uns auf dem Campus

Kontakt | Sekretariat

Andrea Niederhagemann
Gebäude IC Ebene 3 Raum 115
0234 32 – 26427
0234 32 – 14164
sekretariat@fluidvt.ruhr-uni-bochum.de

Herr Felix Pasch, M.Sc.

Ruhr-Universität Bochum
Raum IC 3 / 113
Universitätsstraße 150
44801 Bochum

+49 (0)234 / 32 – 18502
pasch@fluidvt.rub.de

Research

Hybrid Modeling Approaches for Pervaporation: Combining Physical Models with Machine Learning for Interpretable Process Predictions

Membrane-based separation processes such as pervaporation offer energy-efficient alternatives or complements to conventional thermal separation methods and can therefore make a significant contribution to the defossilization of the process industry. However, existing models for describing pervaporation are predominantly empirical and typically require system-specific calibration to experimental data, which is often only sparsely available in the literature. As a result, new mixtures or membranes usually necessitate dedicated experimental campaigns, limiting the applicability of existing models in the early stages of process development.

My research aims to develop hybrid modeling approaches that combine machine learning with physics-based transport models. The focus lies on the data-driven estimation and generalization of model parameters to significantly improve the transferability and predictive capability of pervaporation models. In addition, I am developing an experimental setup for the efficient and precise characterization of pervaporation membranes.

Based on this foundation, the resulting modeling approach can be seamlessly integrated into flowsheet based process simulations or used directly as a predictive tool, providing a level of flexibility comparable to classical thermal separation models and thereby substantially lowering the barriers to applying pervaporation in early stage process development.

Lectures

  • Simulationsgestützte Auslegung von Reaktions- und Trennapparaten
  • Fachlabor Maschinenbau
  • Fachlabor Umweltingenieurswesen

Publications

Articles

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Presentations

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Posters

Felix Pasch, Marcus Grünewald, Maria Polyakova
A predictive tool to incorporate pervaporation into process development based on a hybrid model combining transport equations and machine learning
Kassel Membrane Days 2026, 03.-04.02.26 Kassel