Area of research
Biomedical Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Thermochemical Biomass Conversion Processes, Algal biology and biofuel production, Catalysis and Hydrodesulfurization Studies, and Biodiesel Production and Applications.
Microalgal biofilm cultivation on lignocellulosic based bio-carriers: Effects of material physical characteristics on microalgal biomass production and composition
Hormetic effect of dissolved organic matter from pig manure anaerobic digestion effluents on Chlorella sp.: Physiological and transcriptomic responses
Continuous microwave co-pyrolysis of LDPE and PET coupled ex-situ catalysis to monocyclic aromatic hydrocarbons using different structural forms of HZSM-5 as catalysts
Effect of torrefaction pretreatment on catalytic pyrolysis of bagasse: A study on torrefaction method and atmosphere
Understanding the role of plastic additives in the pyrolysis of plastic wastes: Impact of additives on product selectivity, kinetics, and mechanistic pathways
Enhancing mass transfer efficiency via “Burger” co-pyrolysis of plastics and three biomass components
Regulating the Carbon-to-Nitrogen ratio for enhanced reconstruction efficiency in Litopenaeus vannamei aquaculture systems
Impact of Anaerobic Fermentation Liquid on Bok Choy and Mechanism of Combined Vitamin C from Bok Choy and Allicin in Treatment of DSS Colitis
Preparation of highly selective olefins from pyrolyzed ground film plastics catalyzed by fishbone-based catalysts
Optimizing Fucoxanthin production in Chaetoceros sp. Using conditioned wastewater and tailored culture conditions
Crosstalk with Chlorella sp. reshapes the environmental fates of aspartame: From stress responses to contaminant destabilization
Investigation of self-regulation mechanisms of extracellular organic matters in reused medium on Spirulina platensis
Synergistic effects of biomass-plastic co-pyrolysis: Enhanced performance with microwave assistance and biomass type variability
Microwave catalytic pyrolysis of biomass: a review focusing on absorbents and catalysts
The Structure, Functions and Potential Medicinal Effects of Chlorophylls Derived from Microalgae
Elimination of copper obstacle factor in anaerobic digestion effluent for value-added utilization: Performance and resistance mechanisms of indigenous bacterial consortium
Detoxification of copper and zinc from anaerobic digestate effluent by indigenous bacteria: Mechanisms, pathways and metagenomic analysis
Production of monocyclic aromatic hydrocarbons from microwave co-pyrolysis of polyethylene terephthalate and low-density polyethylene using coconut husk carbon as microwave absorbent
Machine learning application for predicting key properties of activated carbon produced from lignocellulosic biomass waste with chemical activation
Monocyclic aromatic hydrocarbons production from NaOH pretreatment metallized food plastic packaging waste through microwave pyrolysis coupled with ex-situ catalytic reforming
Research status and prospects for bioactive compounds of Chlorella species: Composition, extraction, production, and biosynthesis pathways
Microalgae-based biofertilizers improve fertility and microbial community structures in the soil of potted tomato
Microwave pyrolysis of Choerospondias axillaris seeds with their derived biochar for comprehensive utilization of the biomass
Resource utilization of wastepaper and bentonite: Cu(II) removal in the aqueous environment
Insights into Preparation Methods and Functions of Carbon-Based Solid Acids
Optimizing Chlorella vulgaris Cultivation to Enhance Biomass and Lutein Production
Comparison of microwave and conventional pyrolysis of one-step prepared metal soaps (Li/Na/K/Ca/Mg): Product distribution and heating characteristics
Carbon and energy metabolism for the mixotrophic culture of Chlorella vulgaris using sodium acetate as a carbon source
Microwave-assisted catalytic pyrolysis of waste cooking oil to monocyclic aromatics under a bifunctional SiC ball catalyst
ZSM-5@ceramic foam composite catalyst derived from spent bleaching clay for continuous pyrolysis of waste oil to produce monocyclic aromatic hydrocarbons