A scalable plasma-catalytic air purification technology combining dielectric barrier discharge with mesoporous zeolite catalysts to decompose over 90% of volatile organic compounds and inactivate airborne microorganisms. Designed as an add-on to commercial air filtration systems for indoor air quality and decontamination applications.
This plasma-catalytic air purification system offers a novel approach to indoor air decontamination by combining dielectric barrier discharge (DBD) plasma sources with mesoporous zeolite catalysts. The technology targets the decomposition of volatile organic compounds (VOCs) and inactivation of airborne pathogens, aiming to achieve greater than 90% removal efficiency at initial VOC concentrations of approximately 100 ppm.
The system addresses two critical challenges in air purification: effective removal of chemical pollutants and biological contaminants, while simultaneously managing unwanted byproducts such as ozone. By integrating plasma generation with catalytic decomposition, the technology provides a comprehensive solution for commercial, healthcare, and industrial indoor air quality applications.
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The technology is currently at a mid-stage development level, with core plasma-catalytic mechanisms validated through laboratory experiments. Published and unpublished results confirm effective pathogen inactivation and reactive species generation. The research team has demonstrated proof-of-concept performance for surface decontamination and is now advancing toward integrated system validation.
Planned next steps include constructing a full-scale plasma/catalytic reactor as an add-on for commercial air filtration units, testing decontamination efficiency using coupon-based contamination measurements in the air outflow, and verifying that output gas composition meets EPA requirements for residual VOCs, ozone, and nitrogen oxides. Collaboration with engineering and biology partners is underway to advance toward commercial readiness.
PPPL is a U.S. Department of Energy national laboratory for plasma science and fusion energy, operated by Princeton University on the Forrestal Campus in Plainsboro, New Jersey. Industry engages through user‑facility fusion experiments and specialized plasma labs that support co‑development and validation. Co‑location with Princeton University broadens access to engineering, computation, and commercialization resources, while a dedicated technology transfer and strategic engagement office guides partnering and licensing. Research is funded primarily by the DOE Office of Science, with additional competitive federal support as appropriate. Formal mechanisms such as Strategic Partnership Projects and Cooperative Research and Development Agreements enable flexible collaboration.