Follow
Bjarne Kreitz
Bjarne Kreitz
Postdoctoral Research Associate, Brown University
Verified email at brown.edu
Title
Cited by
Cited by
Year
Process modelling of an alkaline water electrolyzer
P Haug, B Kreitz, M Koj, T Turek
International Journal of Hydrogen Energy 42 (24), 15689-15707, 2017
1382017
Dynamic simulation of the CO2 methanation in a micro-structured fixed-bed reactor
B Kreitz, GD Wehinger, T Turek
Chemical Engineering Science 195, 541-552, 2019
1032019
Quo vadis multiscale modeling in reaction engineering?–A perspective
GD Wehinger, M Ambrosetti, R Cheula, ZB Ding, M Isoz, B Kreitz, ...
Chemical Engineering Research and Design 184, 39-58, 2022
382022
Quantifying the Impact of Parametric Uncertainty on Automatic Mechanism Generation for CO2 Hydrogenation on Ni(111)
B Kreitz, K Sargsyan, K Blöndal, EJ Mazeau, RH West, GD Wehinger, ...
JACS Au 1 (10), 1656-1673, 2021
312021
Dynamic Methanation of CO2 – Effect of Concentration Forcing
B Kreitz, J Friedland, R Güttel, GD Wehinger, T Turek
Chemie Ingenieur Technik 91 (5), 576-582, 2019
302019
Microkinetic Modeling of the CO2 Desorption from Supported Multifaceted Ni Catalysts
B Kreitz, GD Wehinger, CF Goldsmith, T Turek
The Journal of Physical Chemistry C 125 (5), 2984-3000, 2021
232021
Modeling the Dynamic Power‐to‐Gas Process: Coupling Electrolysis with CO2 Methanation
B Kreitz, J Brauns, GD Wehinger, T Turek
Chemie Ingenieur Technik 92 (12), 1992-1997, 2020
192020
Detailed microkinetics for the oxidation of exhaust gas emissions through automated mechanism generation
B Kreitz, P Lott, J Bae, K Blondal, S Angeli, ZW Ulissi, F Studt, ...
ACS Catalysis 12 (18), 11137-11151, 2022
162022
Spray-Dried Ni Catalysts with Tailored Properties for CO2 Methanation
B Kreitz, A Martínez Arias, J Martin, AP Weber, T Turek
Catalysts 10 (12), 1410, 2020
132020
Measuring adsorption capacity of supported catalysts with a novel quasi‐continuous pulse chemisorption method
J Friedland, B Kreitz, H Grimm, T Turek, R Güttel
ChemCatChem 12 (17), 4373-4386, 2020
122020
Non-idealities in lab-scale kinetic testing: a theoretical study of a modular temkin reactor
GD Wehinger, B Kreitz, CF Goldsmith
Catalysts 12 (3), 349, 2022
92022
Microkinetic Modeling of the Transient CO2 Methanation with DFT‐Based Uncertainties in a Berty Reactor
B Kreitz, GD Wehinger, CF Goldsmith, T Turek
ChemCatChem 14 (18), e202200570, 2022
82022
Characterization of a modular Temkin reactor with experiments and computational fluid dynamics simulations
GD Wehinger, B Kreitz, A Nagy, T Turek
Chemical Engineering Journal 389, 124342, 2020
82020
Linking Experimental and Ab Initio Thermochemistry of Adsorbates with a Generalized Thermochemical Hierarchy
B Kreitz, K Abeywardane, CF Goldsmith
Journal of Chemical Theory and Computation 19 (13), 4149-4162, 2023
62023
Automated Generation of Microkinetics for Heterogeneously Catalyzed Reactions Considering Correlated Uncertainties
B Kreitz, P Lott, F Studt, AJ Medford, O Deutschmann, CF Goldsmith
Angewandte Chemie International Edition 62 (39), e202306514, 2023
52023
Development of a Microkinetic Model for the CO2 Methanation with an Automated Reaction Mechanism Generator
B Kreitz, GD Wehinger, CF Goldsmith, T Turek
Computer Aided Chemical Engineering 48, 529-534, 2020
52020
Spatially-resolved investigation of CO2 methanation over Ni/γ-Al2O3 and Ni3. 2Fe/γ-Al2O3 catalysts in a packed-bed reactor
AB Shirsath, ML Schulte, B Kreitz, S Tischer, JD Grunwaldt, ...
Chemical Engineering Journal 469, 143847, 2023
32023
Assessment of Concentration and Temperature Distribution in a Berty Reactor for an Exothermic Reaction
SD Anderson, B Kreitz, T Turek, GD Wehinger
Industrial & Engineering Chemistry Research 61 (30), 10790-10803, 2022
22022
Trendbericht Technische Chemie 2022
B Kreitz, P Biessey, M Börnhorst, V Schallhart, T Westermann
Nachrichten aus der Chemie 70 (4), 56-64, 2022
22022
NaWuReT Workshop: Research in Reaction Engineering for and with Society
M Börnhorst, J Friedland, B Kreitz, E Moioli, G Wehinger
Chemie Ingenieur Technik 93 (8), 1210-1213, 2021
22021
The system can't perform the operation now. Try again later.
Articles 1–20