Patented doped magnetic nanoparticle technology that removes and recovers nutrients from wastewater. Validated at pilot scale in a poultry processing plant with over 90% phosphorus removal, 65% nitrogen reduction, and 20 regeneration cycles. Future work targets nitrate removal via anion-sieve surface chemistry for stormwater applications.
This solution offers a functionalized magnetic nanoadsorbent platform designed to remove nitrogen and phosphorus nutrients from wastewater and stormwater. The core technology is protected by US Patent 10562798 and uses doped magnetic nanoparticles whose surface chemistry is tailored to selectively target specific nutrient species. The technology not only removes phosphorus species but also reduces total Kjeldahl nitrogen, suspended solids, and chemical and biochemical oxygen demand. By enabling nutrient recovery and recycling, the platform supports circular-economy water management goals for industrial and municipal users.
Core technology:
Pilot-scale validation results in a poultry processing plant:
Planned next-stage development:
The nanoadsorbent has completed pilot-scale validation at a poultry processing facility, demonstrating strong performance across multiple contaminant categories and confirming regenerability over at least 20 cycles. The technology is ready for further scale-up and field deployment. Ongoing work focuses on extending the platform to nitrate removal and validating performance in stormwater runoff applications, broadening the addressable market beyond industrial wastewater.
Georgia Institute of Technology is a large, technology‑focused public research university in Atlanta with a strong applied research culture. Industry engages through the Georgia Tech Research Institute for contract R&D, a Midtown innovation district with co‑located corporate labs, and a statewide manufacturing extension to support scale‑up. A long‑standing partnership with a major academic medical center enables clinical translation, and a large co‑op program delivers a steady talent pipeline. Research is backed by competitive federal funding from NSF, NIH, DOE, DoD, and NASA. Technology commercialization is managed by the Georgia Tech Research Corporation, with dedicated licensing, corporate contracting, and startup support.