Area of research
Building and Construction · Biomedical Engineering
Research interest
Research interests include Biogas, Anaerobic digestion, Biology, Metagenomics, Methanogenesis, and Chemistry.
Sustainable Food Waste Management in Anaerobic Digesters: Prediction of the Organic Load Impact by Metagenome-Scale Metabolic Modeling
Metabolic and enzymatic engineering strategies for polyethylene terephthalate degradation and valorization
A unified compendium of prokaryotic and viral genomes from over 300 anaerobic digestion microbiomes
Polyphosphate in food systems: Their roles and applications in foods and contribution to sustainable processing practices
Bioaugmentation strategies based on bacterial and methanogenic cultures to relieve stress in anaerobic digestion of protein-rich substrates
Process stability in anaerobic Digestion: Unveiling microbial signatures of full-scale reactor performance
Biomethanation on demand: Continuous and intermittent hydrogen supply on biological CO2 methanation
Synergistic functional activity of a landfill microbial consortium in a microplastic-enriched environment
Classification of bioactive peptides: A systematic benchmark of models and encodings
Cupriavidus necator as a platform for polyhydroxyalkanoate production: An overview of strains, metabolism, and modeling approaches
Magnetite Alters the Metabolic Interaction between Methanogens and Sulfate-Reducing Bacteria
Metatranscriptomics-guided genome-scale metabolic modeling of microbial communities
Different microplastics in anaerobic paddy soils: Altering methane emissions by influencing organic matter composition and microbial metabolic pathways
Adaptation of Anaerobic Digestion Microbial Communities to High Ammonium Levels: Insights from Strain-Resolved Metagenomics
Longitudinal flux balance analyses of a patient with episodic colonic inflammation reveals microbiome metabolic dynamics
An integrated metagenomic model to uncover the cooperation between microbes and magnetic biochar during microplastics degradation in paddy soil
Decoding Microbial Responses to Ammonia Shock Loads in Biogas Reactors through Metagenomics and Metatranscriptomics
An integrated Metagenomic-Pangenomic strategy revealed native microbes and magnetic biochar cooperation in plasticizer degradation
Genome-centric metagenomics revealed the effect of pH on the microbiome involved in short-chain fatty acids and ethanol production
Integrating metagenomic binning with flux balance analysis to unravel syntrophies in anaerobic CO2 methanation
Preliminary investigation of microorganisms potentially involved in microplastics degradation using an integrated metagenomic and biochemical approach
Effect of pressure on biomethanation process and spatial stratification of microbial communities in trickle bed reactors under decreasing gas retention time
In-situ biogas upgrading assisted by bioaugmentation with hydrogenotrophic methanogens during mesophilic and thermophilic co-digestion
KEMET – A python tool for KEGG Module evaluation and microbial genome annotation expansion
Analysis of the anaerobic digestion metagenome under environmental stresses stimulating prophage induction
Natural Saccharomyces cerevisiae Strain Reveals Peculiar Genomic Traits for Starch-to-Bioethanol Production: the Design of an Amylolytic Consolidated Bioprocessing Yeast
Genome-Centric Metatranscriptomics Analysis Reveals the Role of Hydrochar in Anaerobic Digestion of Waste Activated Sludge
Pilot-scale biomethanation in a trickle bed reactor: Process performance and microbiome functional reconstruction
Evaluation of acidogenesis products’ effect on biogas production performed with metagenomics and isotopic approaches
Comprehensive evaluation of different strategies to recover methanogenic performance in ammonia-stressed reactors