Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research interests include Chemical Looping and Thermochemical Processes, Carbon Dioxide Capture Technologies, Thermochemical Biomass Conversion Processes, and Catalytic Processes in Materials Science.
A Comprehensive Review of Chemical Looping Processes: From Fundamentals to Applications
Assessing carbon and energy balance in coupled direct air capture and underground CO2 sequestration via enhanced oil recovery
Investigation of Al2O3, ZrO2, SiO2, and CeO2 supported nickel catalysts for tri-reforming of methane
CO<sub>2</sub> Capture with Mg-, Al-, and Zr- Assisted CaO-Based Sorbents in the Calcium Looping Process Under Mild and Realistic Conditions
Experimental study of a novel biogas upgrading process based on chemical absorption using an AEP-AMP blend for energy efficient CO2 capture
A study of Ni‐Co/
<scp>
CeO
<sub>2</sub>
</scp>
catalyst derived from metal–organic framework for dry reforming of methane
An innovative method on synthesis of carbon‐zeolite porous composite from tailings solvent recovery units and its utilization in the
<scp>
CO
<sub>2</sub>
</scp>
adsorption process
Adsorption of CO2 from impurity-rich flue gas on mesoporous silica foam: A performance-preserving approach
Optimizing Zeolite 13X Synthesis from Kaolin Clay for Higher CO
<sub>2</sub>
Adsorption: A Statistical Approach
Techno-Economic Assessment of Three Different Cases for Hydrogen Production Using Carburization Looping Reforming
Random forest regression for catalyst performance prediction and validation of tri‐reforming of methane (
<scp>TRM</scp>
)
Amine Sorbents for Sustainable Direct Air Capture: Long-Term Stability and Extended Aging Study
Ambient and sub-ambient temperature direct air CO<sub>2</sub> capture (DAC) by novel supported <i>in situ</i> polymerized amines
Influence of organic ligand and nickel loading on the performance of MOF-derived catalysts for dry reforming of methane
Copper-based chemical looping air separation process: Thermodynamics, kinetic modeling, and simulation of the fluidized beds
Chemical Looping Combustion over Yolk–Shell-Type Alumina-Based Oxygen Carrier: Catalytic Structure and Process Activity
Life cycle assessment of different hydrogen production setups from chemical looping reforming system using carburization reactions
Improvement of the Spray Column Performance for CO<sub>2</sub> Capture in an Amine Absorption Process Using Multiple Nozzle Arrangement
Catalyst development for the tri‐reforming of methane (<scp>TRM</scp>) process by integrated singular machine learning models
Conversion of tailings solvent recovery unit (
<scp>TSRU</scp>
) by‐products into activated carbon‐zeolite composites: Impact of fusion pre‐treatment on porosity and
<scp>
CO
<sub>2</sub>
</scp>
capture
3D Printed Limestone Monoliths for CO<sub>2</sub> Capture in Calcium Looping
Feasibility assessment of transition metal carbides applied to chemical looping reforming – A proof-of-concept for tungsten carbide
A review of chemical looping combustion technology: Fundamentals, and development of natural, industrial waste, and synthetic oxygen carriers
Effect of thermal treatment conditions on the stability of MOF-derived Ni/CeO2 catalyst for dry reforming of methane
A review on catalyst development for conventional thermal dry reforming of methane at low temperature
Microwave-assisted hydrothermal synthesis of Ru/CeO2 catalyst for efficient and stable low-temperature dry reforming of methane
Fast pyrolysis multiphase CFD-kinetics model in a drop tube reactor
Kinetic assessment for the carburization mechanisms of tungsten trioxide in the presence of methane applied to hydrogen and syngas production
Performance assessment of drop tube reactor for biomass fast pyrolysis using process simulator
La–Ce binary oxide catalysts for low-temperature dry reforming