Fr | Ar

Mr. Malek MSHEIK

School of Engineering of Beirut

Instructor

(+961) 1 421 000 ext malek.msheik@usj.edu.lb

PhD in process engineering in France (2020-2023) Master 2 in process engineering in France (2019-2020) Engineering diploma in industrial chemistry petrochemistry

Highest degree : PhD in Engineering Sciences - Université de Perpignan [France]


DegreesUniversityCountryYear
PhD in engineering sciencesUniversité de PerpignanFrance2023
Master in process engineeringUniversité Grenoble AlpesFrance2020
Engineering diploma in industrial chemistry and petrochemistryUniversité Libanaise (UL)Lebanon2018

in ESIB: Petroleum refining Project management Tranfer phenomena Process equipment design

Experience in University Teaching Outside USJCountryInstitutionStart DateEnd Date
Lectures and exercices on H2 production processes (adjunct instructor)FranceUniversité de Perpignan02/11/202030/10/2023

Professional ExperienceOrganizationStart dateEnd date
PhDPromes-CNRS02/11/202030/10/2023
Internship-FYPBel for all for good27/01/202024/07/2020
InternshipCimenterie Nationale02/07/201722/09/2017

Engineering and Technology, Sciences

Process engineering Renewable energy CFD simulations

1- Methane Cracking for Hydrogen Production: A Review of Catalytic Molten Media Pyrolysis https://doi.org/10.3390/en14113107 2- Experimental comparison of solar methane pyrolysis in gas-phase molten-tin bubbling tubular reactors https://doi.org/10.1016/j.energy.2022.124943 3- CFD Simulation of a Hybrid Solar/Electric Reactor for Hydrogen Carbon Production from Methane Cracking https://doi.org/10.3390/fluids8010018 4- Enhancing molten tin methane pyrolysis performance for hydrogen and carbon production in a hybrid solar/electric bubbling reactor https://doi.org/10.1016/j.ijhydene.2023.08.068 5- Solar methane pyrolysis in a liquid metal bubble column reactor: Effect of medium type and gas injection configuration https://doi.org/10.1016/j.jaap.2024.106756 6- A new hybrid solar/electric reactor for gas or liquid media methane pyrolysis https://doi.org/10.1063/5.0148720