Area of research
Biomedical Engineering · Catalysis
Research interest
Research interests include Thermochemical Biomass Conversion Processes, Catalysts for Methane Reforming, Recycling and Waste Management Techniques, and Catalytic Processes in Materials Science.
Thermo-chemical conversion of carbonaceous wastes for CNT and hydrogen production: a review
Thermochemical conversion of sewage sludge: A critical review
Effect of calcium addition on Mg-AlOx supported Ni catalysts for hydrogen production from pyrolysis-gasification of biomass
Fe–Ni–MCM-41 Catalysts for Hydrogen-Rich Syngas Production from Waste Plastics by Pyrolysis–Catalytic Steam Reforming
Production and application of carbon nanotubes, as a co-product of hydrogen from the pyrolysis-catalytic reforming of waste plastic
Promoting hydrogen production and minimizing catalyst deactivation from the pyrolysis-catalytic steam reforming of biomass on nanosized NiZnAlOx catalysts
Plasma-photocatalytic conversion of CO2 at low temperatures: Understanding the synergistic effect of plasma-catalysis
Characteristics and catalytic properties of Ni/CaAlO catalyst for hydrogen-enriched syngas production from pyrolysis-steam reforming of biomass sawdust
Catalytic steam reforming of volatiles released via pyrolysis of wood sawdust for hydrogen-rich gas production on Fe–Zn/Al2O3 nanocatalysts
Pyrolysis of waste tyres: A review
Processing Real-World Waste Plastics by Pyrolysis-Reforming for Hydrogen and High-Value Carbon Nanotubes
Effect of Ni Particle Location within the Mesoporous MCM-41 Support for Hydrogen Production from the Catalytic Gasification of Biomass
Pyrolysis/gasification of cellulose, hemicellulose and lignin for hydrogen production in the presence of various nickel-based catalysts
Sustainable processing of waste plastics to produce high yield hydrogen-rich synthesis gas and high quality carbon nanotubes
Nickel-catalysed pyrolysis/gasification of biomass components