Led by Assistant Professor Dengjun (Kevin) Wang, the study shifts the perspective on sargassum from a coastal nuisance to a viable resource. Massive accumulations of the seaweed have plagued Caribbean and Gulf coastlines throughout 2026, creating economic and ecological strain. By applying pyrolysis—a thermal conversion process—the research team aims to turn harvested biomass into stable, carbon-rich material designed for environmental remediation.
In section Releases
University of Florida and Myno Carbon Target Sargassum for Water Cleanup
University of Florida researchers have partnered with Myno Carbon to transform invasive coastal sargassum into specialized biochar. Funded by the EPA, the project investigates whether this waste-to-value process can effectively capture contaminants and improve water quality, particularly in sensitive environments like oyster beds.

This initiative aligns with Myno Carbon’s "Biochar 3.0" strategy, which prioritizes scientifically engineered carbon materials over traditional soil amendments. The project evaluates the biochar's capacity to immobilize heavy metals, petroleum hydrocarbons, and PFAS. According to Myno CEO Thor Kallestad, the collaboration leverages academic expertise and industrial pyrolysis capabilities to address dual environmental challenges: managing accumulating waste while simultaneously developing tools for advanced water filtration.
Comments (0)
No comments yet. Be the first!