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Leading a strong team of 9 engineers covering all simulation fields required for the…
Aktivitäten
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🔋 Thank You to Our 24,000 Followers! We’re thrilled to celebrate a growing community of 24,000 energy innovators, partners, and changemakers who…
🔋 Thank You to Our 24,000 Followers! We’re thrilled to celebrate a growing community of 24,000 energy innovators, partners, and changemakers who…
Beliebt bei Pascal Hermann
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A glimpse of what’s coming… 25.11.25 Can you guess where? 👀 William Bergh Kasper Westman Hanna Brasar Matt Davoudi Luka Smajila Gustaf Sandegren…
A glimpse of what’s coming… 25.11.25 Can you guess where? 👀 William Bergh Kasper Westman Hanna Brasar Matt Davoudi Luka Smajila Gustaf Sandegren…
Beliebt bei Pascal Hermann
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🚌 Our Team Visited Busworld 2025! Our colleagues Patric C. Auner, Albert Zilberberg, and Stefan Müller recently visited Busworld 2025, exploring the…
🚌 Our Team Visited Busworld 2025! Our colleagues Patric C. Auner, Albert Zilberberg, and Stefan Müller recently visited Busworld 2025, exploring the…
Beliebt bei Pascal Hermann
Berufserfahrung
Ausbildung
Bescheinigungen und Zertifikate
Veröffentlichungen
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Optimization of a Split and Recombine Micromixer by Improved Exploitation of Secondary Flows
Chemical Engineering Journal
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Determination of the Kinetics of the Ethoxylation of Octanol in Homogeneous Phase
A two-dimensional computational fluid dynamics model was utilized to test different kinetic models for the description of the anionic polymerization of octanol with ethylene oxide in a microreactor. The reaction was performed as a continuous reaction under elevated pressure and temperatures in a one-phase system. The kinetic parameters were determined with numerical methods by reducing the deviation to experimental data based on the Nelder–Mead method. Four different reaction models with one…
A two-dimensional computational fluid dynamics model was utilized to test different kinetic models for the description of the anionic polymerization of octanol with ethylene oxide in a microreactor. The reaction was performed as a continuous reaction under elevated pressure and temperatures in a one-phase system. The kinetic parameters were determined with numerical methods by reducing the deviation to experimental data based on the Nelder–Mead method. Four different reaction models with one, two, three, and four different rates for the first propagation steps were tested. The best agreement with the experimental data was found for the four rate model, with a prediction accuracy close to the experimental error. The gathered data suggests an increasing reaction rate for the first four propagation steps, which is in agreement with the Weibull–Törnquist effect
Andere Autor:innenVeröffentlichung anzeigen -
Simulation Study of the Ethoxylation of Octanol in a Microstructured Reactor
Industrial & Engineering Chemistry Research
The influence of physical properties and the resulting limitations of heat and mass transport for the ethoxylation of octanol in a microstructured reactor were investigated by CFD simulations. The reaction was performed under supercritical conditions in a one-phase system at pressures between 90 and 100 bar and temperatures between 180 and 240 °C. A 2D CFD model was applied to determine the kinetic parameters by fitting the model to experimental data. Furthermore, the sensitivity of the…
The influence of physical properties and the resulting limitations of heat and mass transport for the ethoxylation of octanol in a microstructured reactor were investigated by CFD simulations. The reaction was performed under supercritical conditions in a one-phase system at pressures between 90 and 100 bar and temperatures between 180 and 240 °C. A 2D CFD model was applied to determine the kinetic parameters by fitting the model to experimental data. Furthermore, the sensitivity of the simulations regarding different physical properties was determined. The influence of diffusion was studied in detail, and it was found that a low diffusion coefficient results in a radial gradient in viscosity which leads to segregated streamlines and a bending of the streamlines toward the center. This “bottleneck” effect causes a large increase of the velocity in the center of the pipe, with the risk of the breakthrough of ethylene oxide. This effect occurs only in the case of higher ethoxylation degrees.
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Oral Presentation: ETHOXYLATION OF OCTANOL IN A MICROREACTOR – PROCESS INTENSIFICATION AND MODELING
IMRET13 Budapest
Kurse
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Ansys CFX Löser & Postprozessing
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Ansys Geometrie & Vernetzung
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CFD with OpenFOAM
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Sprachen
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Deutsch
Muttersprache oder zweisprachig
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Englisch
Fließend
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Niederländisch
Muttersprache oder zweisprachig
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Französisch
Grundkenntnisse
Weitere Aktivitäten von Pascal Hermann
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🚀 We’re live: Farasis Energy ESS for home appliances! Reliable home backup and everyday energy savings—without the hassle. • Automatic switchover…
🚀 We’re live: Farasis Energy ESS for home appliances! Reliable home backup and everyday energy savings—without the hassle. • Automatic switchover…
Beliebt bei Pascal Hermann
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I am pleased to announce the publication of our article, co-authored with Çağla Odabaşı Özer, PhD and Onur Taşkıran, entitled “Real-time detection…
I am pleased to announce the publication of our article, co-authored with Çağla Odabaşı Özer, PhD and Onur Taşkıran, entitled “Real-time detection…
Beliebt bei Pascal Hermann
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⚡ Why Pouch Cells Are the Cell Format of the Future ⚡ The race for higher performance, lighter weight, and safer battery systems is accelerating…
⚡ Why Pouch Cells Are the Cell Format of the Future ⚡ The race for higher performance, lighter weight, and safer battery systems is accelerating…
Beliebt bei Pascal Hermann
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Recently, our paper “Failure and Constitutive Behaviour of a Li-ion Pouch Cell Under Mechanical Loading” was published in Journal of Power Sources…
Recently, our paper “Failure and Constitutive Behaviour of a Li-ion Pouch Cell Under Mechanical Loading” was published in Journal of Power Sources…
Beliebt bei Pascal Hermann
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The first-generation cells combine high-nickel ternary cathodes with high-silicon anodes and are designed to achieve an energy density of 400–500…
The first-generation cells combine high-nickel ternary cathodes with high-silicon anodes and are designed to achieve an energy density of 400–500…
Beliebt bei Pascal Hermann
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#Türkiye | Togg | Siro Energy | Farasis Energy | 🇹🇷 🇨🇳 🇩🇪 #MarketLaunch #Togg #Europe #Germany #Deutschland #Europe #BEV #NEV #China #SilkRoute…
#Türkiye | Togg | Siro Energy | Farasis Energy | 🇹🇷 🇨🇳 🇩🇪 #MarketLaunch #Togg #Europe #Germany #Deutschland #Europe #BEV #NEV #China #SilkRoute…
Beliebt bei Pascal Hermann
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Since 2019, Sergio Rocha has served as Togg’s COO. As of September 1, 2025, he has handed over this role to Roberto Rempel. Mr. Rocha will…
Since 2019, Sergio Rocha has served as Togg’s COO. As of September 1, 2025, he has handed over this role to Roberto Rempel. Mr. Rocha will…
Beliebt bei Pascal Hermann
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