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Prof. Dr. Bernhard Christian Seyfang

Technische Hochschule Bingen

Publikationen
Ergebnisse pro Seite:  10

Brinkmann, Simon; Seyfang, Bernhard C.

Building a Code-Based Model to Describe Syngas Production from Biomass

ChemEngineering. Bd. 8. H. 5. MDPI AG 2024 S. 94


Ritzler, Peter M.; Weiss, Clemens K.; Seyfang, Bernhard C.

One-Dimensional Modeling of Mass Transfer Processes in an Annular Centrifugal Contactor

ChemEngineering. Bd. 7. H. 4. MDPI AG 2023 S. 59


Göttert, Simeon; Salomatov, Irina; Eder, Stephan et al.

Continuous Nanoprecipitation of Polycaprolactone in Additively Manufactured Micromixers

Polymers. Bd. 14. H. 8. MDPI AG 2022 S. 1509


Fillinger, Sandra; Seyfang, Bernhard; Wozny, Günter et al.

PlantDesign - Prototypical implementation of an integrated engineering tool

Computers & Chemical Engineering. Bd. 147. Elsevier BV 2021 S. 107233


Köhn, Christian; Kanzler, Ulrike; Reichert, Christian et al.

Prediction of Excess Enthalpy Using Volume-Translated Peng–Robinson Equation of State

ChemEngineering. Bd. 5. H. 1. MDPI AG 2021 S. 8


Neukäufer, Johannes; Seyfang, Bernhard; Grützner, Thomas

Investigation of Contact Angles and Surface Morphology of 3D-Printed Materials

Industrial & Engineering Chemistry Research. Bd. 59. H. 14. American Chemical Society (ACS) 2020 S. 6761 - 6766


Seyfang, Bernhard C.; Klein, Andreas; Grützner, Thomas

Extraction Centrifuges - Intensified Equipment Facilitating Modular and Flexible Plant Concepts

ChemEngineering. Bd. 3. H. 1. MDPI AG 2019 S. 17


Grützner, Thomas; Schnider, Christian; Zollinger, Daniel et al.

Reducing Time to Market by Innovative Development and Production Strategies

Chemical Engineering & Technology. Bd. 39. H. 10. Wiley 2016 S. 1835 - 1844


Schumacher, Juergen O.; Eller, Jens; Sartoris, Guido et al.

2+1D modelling of a polymer electrolyte fuel cell with glassy-carbon microstructures

Mathematical and Computer Modelling of Dynamical Systems. Bd. 18. H. 4. Informa UK Limited 2012 S. 355 - 377


Simmen, F.; Horisberger, M.; Seyfang, B. et al.

Glassy carbon – A promising substrate material for pulsed laser deposition of thin Li1+xMn2O4−δ electrodes

Applied Surface Science. Bd. 257. H. 12. Elsevier BV 2011 S. 5347 - 5353