Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research interests include Pyrolysis, Chemistry, Catalysis, Biomass (ecology), Hydrothermal liquefaction, and Husk.
Durian shell biochar catalyst with excellent aromatic selectivity and deoxygenation performance: application in catalytic co-pyrolysis of pretreated Chlorella and waste vegetable oil
Enhanced high-value product generation via co-pyrolysis of pretreated Chlorella and waste vegetable oil: Experimental and life cycle assessment
Sustainability of biomass pyrolysis for bio-aromatics and bio-phenols production: Life cycle assessment of stepwise catalytic approach
Catalytic pyrolysis of wood dust for monophenol over macroalgal biochar-based catalyst: Effects of activation agents and atmospheres during catalyst synthesis on its performance
Optimizing macroalgal biochar-based catalysts for monophenols recovery during wood dust catalytic pyrolysis: A comparative study using response surface methodology and artificial neural network
Effect of Ni, Mo and W on hydrothermal co-liquefaction of macroalgae and microalgae: Impact on bio-crude yield and composition
Chemical process of multiphase system in lignin-biochar co-pyrolysis for enhanced phenol recovery
A review on fast hydrothermal liquefaction of biomass
Evaluation of biochar-derived carbocatalysts for pyrolytic conversion of sawdust: Life cycle assessment towards monophenol production
Integrated route of fast hydrothermal liquefaction of microalgae and sludge by recycling the waste aqueous phase for microalgal growth
Study on synergistic mechanism of Co-hydrothermal liquefaction of microalgae and macroalgae
Selective oxidation of 5-hydroxymethylfurfural to furan-2,5-dicarbaldehyde using chitosan-based biochar composite cadmium sulfide quantum dots
Phycocyanin to biocrude via the integration of isothermal/fast hydrothermal liquefaction and aqueous phase recirculation: Reaction products and process analyses
High-grade biofuel production from catalytic pyrolysis of waste clay oil using modified activated seaweed carbon-based catalyst
Preparation and property of N-doped porous carbon material by one-step pyrolysis of protein-rich algal biomass
Biofuel characteristic of waste clay oil pyrolysis
Catalytic co‐pyrolysis of macroalgal components with lignocellulosic biomass for enhanced biofuels and high‐valued chemicals
Synergistic effects of catalytic co-pyrolysis of macroalgae with waste plastics
Seaweed-derived biochar with multiple active sites as a heterogeneous catalyst for converting macroalgae into acid-free biooil containing abundant ester and sugar substances
Cyclic Compound Formation Mechanisms during Pyrolysis of Typical Aliphatic Acidic Amino Acids
Catalytic co-pyrolysis of seaweeds and cellulose using mixed ZSM-5 and MCM-41 for enhanced crude bio-oil production
Catalytic fast hydropyrolysis of seaweed biomass with different zeolite catalysts to produce high-grade bio-oil
Mechanism of solvothermal conversion of xylose to furfural in rich-methanol solution: A study based on density functional theory
Optimization of hydrothermal co-liquefaction of seaweeds with lignocellulosic biomass: Merging 2nd and 3rd generation feedstocks for enhanced bio-oil production
Effect of washing with diluted acids on Enteromorpha clathrata pyrolysis products: Towards enhanced bio-oil from seaweeds
Catalytic pyrolysis of waste clay oil to produce high quality biofuel
Co-pyrolysis of seaweeds with waste plastics: modeling and simulation of effects of co-pyrolysis parameters on yields, and optimization studies for maximum yield of enhanced biofuels
Effect of cosolvent and addition of catalyst (HZSM‐5) on hydrothermal liquefaction of macroalgae
Co-pyrolysis of biomass and waste plastics as a thermochemical conversion technology for high-grade biofuel production: Recent progress and future directions elsewhere worldwide
A comparative study on the quality of bio-oil derived from green macroalga Enteromorpha clathrata over metal modified ZSM-5 catalysts