Hesham Abdulhamed Alhumade
Assistant Professor-Chemical and Materials Engineering Department · King Abdulaziz University
Research Interests
1. Polymer nanocomposites synthesis and characterization. 2. Corrosion and electrochemical testing. 3. Coating 4. Fluid dynamics modeling and simulation. 5. Biomass pyrolysis conversion Bio-fuel. 6. Renewable Energy
Biography
Skilled engineer with experience in chemical industry and enthusiastic Assistant Professor in Chemical and Material engineering with extensive research, teaching, supervision and administration experience. Meticulous and methodical in approach to all tasks, guaranteeing high quality results in line with learning specifications. Research interests include Polymer nanocomposites, renewable energy, Catalyst, Solar systems and Fuel cell. Currently working on developing pyrolysis techniques for biomass conversion to biofuel to meet current industrial demanding for adequate waste management process. In oil and gas industry, promising research are conducted on the field of synthesis and functionalization of catalyst for hydrocarbon conversion and oil upgrading purposes. Research interests include modeling and simulation of fluid dynamics in porous media and synthesis of nanocomposites coating for corrosion resistance applications. I received the SABIC Distinguished Award, in 2006
Education
B. Sc. in Chemical Engineering, King Fahd University of Petroleum & Minerals; Dhahran, Saudi Arabia. M.Sc. in Chemical Engineering, University Of Calgary; Calgary, Canada Ph.D. in Chemical Engineering, University Of Waterloo, Waterloo, Canada
Recent Scopus Publications
- Enhanced Absorption Dominated Electromagnetic Interference Shielding Enabled by Carbon Nanotube and Graphene Reinforced Electrospun PVDF Nanocomposite
- Photothermal carbon black coatings enable efficient solar-driven membrane distillation
- An Integrated Kinetic Modeling Framework for Copyrolysis of Biomass and Plastic Waste
- Energy storage systems: Comparisons, environmental impacts, selection criteria, and bibliometric analysis for large-scale applications
- NiCr NPs-decorated carbon nanofibers for efficient nitrogenous pollutants electro oxidation
Links
- ORCID https://orcid.org/0000-0002-9382-242X
- Google Scholar https://scholar.google.com/citations?user=tP2ZkyoAAAAJ
- Scopus https://www.scopus.com/authid/detail.uri?authorId=55795893100