Pourchez, J.; Peyron, A.; Sarry, G.; Leclerc, L.; Verhoeven, P.O.; Choi, P.; Pierson, C.; Petit, O.; Hernández, F.; Dumitrescu, C.
Antimicrobial Performance of an Innovative Technology of Atmospheric Plasma Reactors against Bioaerosols: Effectiveness in Removing Airborne Viable Viruses. Buildings 2022, 12, 1587.
https://doi.org/10.3390/buildings12101587
AMA Style
Pourchez J, Peyron A, Sarry G, Leclerc L, Verhoeven PO, Choi P, Pierson C, Petit O, Hernández F, Dumitrescu C.
Antimicrobial Performance of an Innovative Technology of Atmospheric Plasma Reactors against Bioaerosols: Effectiveness in Removing Airborne Viable Viruses. Buildings. 2022; 12(10):1587.
https://doi.org/10.3390/buildings12101587
Chicago/Turabian Style
Pourchez, Jérémie, Aurélien Peyron, Gwendoline Sarry, Lara Leclerc, Paul O. Verhoeven, Peter Choi, Claude Pierson, Olivier Petit, Francisco Hernández, and Carmen Dumitrescu.
2022. "Antimicrobial Performance of an Innovative Technology of Atmospheric Plasma Reactors against Bioaerosols: Effectiveness in Removing Airborne Viable Viruses" Buildings 12, no. 10: 1587.
https://doi.org/10.3390/buildings12101587
APA Style
Pourchez, J., Peyron, A., Sarry, G., Leclerc, L., Verhoeven, P. O., Choi, P., Pierson, C., Petit, O., Hernández, F., & Dumitrescu, C.
(2022). Antimicrobial Performance of an Innovative Technology of Atmospheric Plasma Reactors against Bioaerosols: Effectiveness in Removing Airborne Viable Viruses. Buildings, 12(10), 1587.
https://doi.org/10.3390/buildings12101587