PEREZ PASTENES, HUGO
INGENIERÍA · Nivel 1
Profesor de Tiempo Completo, Titular C en Universidad Veracruzana
Professor-researcher at Universidad Veracruzana with a PhD in Chemical Engineering. His research focuses on chemical reaction engineering, catalytic and membrane reactors, computational fluid dynamics, heterogeneous catalysis, process modeling and optimization, and data-driven methods applied to chemical processes.
Professor-researcher at Universidad Veracruzana with a PhD in Chemical Engineering. His research focuses on chemical reaction engineering, catalytic and membrane reactors, computational fluid dynamics, heterogeneous catalysis, process modeling and optimization, and data-driven methods applied to chemical processes.
| Nombre | HUGO PEREZ PASTENES |
|---|---|
| Área | INGENIERÍAS Y DESARROLLO TECNOLÓGICO |
| Campo | INGENIERÍA |
| Disciplina | INGENIERÍA QUÍMICA |
| Especialidad | REACTORES |
| CVU | 36314 |
| Institución | |
|---|---|
| Dependencia | UNIVERSIDAD VERACRUZANA REGION COATZACOALCOS-MINATITLAN |
| Entidad | VERACRUZ DE IGNACIO DE LA LLAVE |
| Nivel | 1 |
| Vigencia | Inicio: 01/01/2022 |
| Fin: 31/12/2026 |
Últimas publicaciones Scopus
- 2026
- A Hybrid Physics-Informed Neural Network (PINN) for the Electro-Oxidation of 2-Chlorophenol on BDD Electrodes in a Flow-By Reactor Under Batch Recirculation Processes · Vol. 14 Article
- Optimization of propylene yield in the oxidative dehydrogenation of propane with series membrane reactors using CFD simulation and multivariate analysis Chemical Engineering and Processing Process Intensification · Vol. 222 Article
- CFD-Based Design Evaluation of a Packed-Bed Reactor for Enzymatic Nitrogen Recovery from Human Urine: A Comparison of Particle-Resolved and Pseudo-Homogeneous Models Processes · Vol. 14 Article
- Data-Based Modeling for Maximizing the Degradation Efficiency of Pomegranate Red Dye in Bicarbonate-Activated Hydrogen Peroxide Oxidation System Lecture Notes in Networks and Systems · Vol. 1901 LNNS Conference Paper
- A review on the ethene-to-propene reaction over zeolitic materials: comparison of the maximum catalytic activity, reaction conditions, and molecular pathways International Journal of Chemical Reactor Engineering Review
