Our Proprietary
Waste-to-Wealth Platform
PHAsys BioTech has engineered a proprietary and commercially scalable waste-to-wealth platform. Our process efficiently converts low-value organic waste streams, like food waste and waste lipids, into high-value polyhydroxyalkanoates (PHAs), creating a cost-effective and truly circular alternative to petroleum-based plastics
Microbial Magic
Specialized microbes convert organic waste into valuable PHA polymers efficiently
Green Process
Eco-friendly extraction yields pure, high-grade biopolymer resin ready for use
PHA Polymers
Biodegradable plastics from organic waste


Microbial Fermentation
Our proprietary microbes convert organic feedstock into valuable biopolymers through a carefully controlled fermentation process, maximizing yield and sustainability


Green Extraction
We use environmentally friendly methods to extract pure, high-grade PHA resin, ensuring minimal waste and energy use for scalable production
Our Publication
Selected research publications from Phasys team
Yeast bioaugmentation fosters medium-chain carboxylates and polyhydroxyalkanoates production from cheese whey.
Bioresource Technology 387, 134979
Luo, L., Vecchione, D., Aponte, M., Blaiotta, G., Pradhan, N.*, Dessi, P.* (2026)


Multilayer graphene reshapes syntrophic interactions and enhances methane production during anaerobic digestion of food waste.
Journal of Environmental Chemical Engineering 14, 121872.
Luo, L., Leelayouthayotin, C., Di Capua, F., Pradhan, N.* (2026)
Comparison of mono-and co-digestion of moderately thermo-alkaline pretreated sewage sludge with food waste: Effects on methane production and microbial communities.
Biomass and Bioenergy 208, 108789.
Luo, L., Chan, T.T., Tan, G.Y.A., Di Capua, F., Pradhan, N.* (2025)










Lactic acid-based fermentative hydrogen production from kitchen waste: Mechanisms and taxonomic insights.
Chemical Engineering Journal 488, 150854.
Luo, L, Lim, R., Pradhan, N.* (2024).
Anaerobic mono-digestion and co-digestion of food waste and mixed sewage sludge: A comparative analysis of metabolic patterns and taxonomic profiles.
Chemical Engineering Journal 489, 151397.
Luo, L, Pradhan, N.* (2024)
Effect of zero-valent iron nanoparticles on taxonomic composition and hydrogen production from kitchen waste.
Bioresource Technology 387, 129578.
Luo, L., Mak, K., Mal, J., Khanal, S.K., Pradhan, N.* (2023)

