Ambient humidity, temperature, and ozone influence the viability of airborne viruses, but their synergistic effects are poorly understood, particularly regarding ozone with humidity/temperature changes. Therefore, we examined the inactivation of airborne influenza viruses and coronaviruses under combinations of low ambient ozone concentrations, relative humidity (RH) levels, and temperatures typical of daily life. Viral fluid was atomized in a closed chamber conditioned with different combinations of these factors. The atomized aerosol particles containing the virus were exposed to ambient air and then sampled for titration. Active virus levels in ambient air at 50%-85% RH with 15, 35, and 55 ppb ozone significantly decreased compared with those in ambient air with 0 ppb ozone, whereas those in ambient air at < 40% RH decreased only slightly, even with 100 ppb ozone. Viral gene copy numbers, assayed via quantitative real-time polymerase chain reaction, remained similar across all conditions. Inactivation increased with higher temperatures, although not at 15°C. These findings suggest that low concentrations of ambient ozone, when combined with high humidity and temperature, effectively inactivate airborne viruses, potentially influencing viral transmission in real-world environments.
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http://dx.doi.org/10.1111/1348-0421.13204 | DOI Listing |
Microbiol Immunol
March 2025
Niterra Co. Ltd., Japan.
Ambient humidity, temperature, and ozone influence the viability of airborne viruses, but their synergistic effects are poorly understood, particularly regarding ozone with humidity/temperature changes. Therefore, we examined the inactivation of airborne influenza viruses and coronaviruses under combinations of low ambient ozone concentrations, relative humidity (RH) levels, and temperatures typical of daily life. Viral fluid was atomized in a closed chamber conditioned with different combinations of these factors.
View Article and Find Full Text PDFJ Virol Methods
March 2025
Global Research & Development for Lysol and Dettol, Reckitt Benckiser LLC, Montvale, New Jersey, USA. Electronic address:
We assessed the viability of aerosolized human betacoronavirus OC43 (HCoV-OC43; ATCC VR-1558), human rhinovirus-14 (RV-14; ATCC VR-284) and feline calicivirus (FCV; ATCC VR-782) as representative enveloped and non-enveloped respiratory viruses of mammals in indoor air under ambient conditions (relative humidity 50±10% and air temperature 22±2°C) using a room-sized (25 m; 900 ft) aerobiology chamber. All virus suspensions contained a soil load to simulate the presence of body fluids and they were separately aerosolized into the chamber using a six-jet Collison nebulizer. A muffin fan was used to uniformly mix the air inside the chamber and to keep the aerosols airborne.
View Article and Find Full Text PDFSmall
March 2025
Institute for Electric Light Sources, School of Information Science and Technology, Fudan University, Shanghai, 200433, P. R. China.
Storing perovskite precursor solutions under ambient conditions poses a significant challenge to commercialization, as humidity and oxidation accelerate ageing and introduce defects in devices. A major contributor to solution ageing and impurity perovskite phases is the deprotonation of hybrid organic cations, specifically methylammonium (MA) and formamidinium (FA). In this work, a proton-rich additive, 4-(aminomethyl)pyridine 2-iodide, is used to inhibit MA deprotonation in precursor solutions by generating free H, thereby mitigating the degradation of organic cations under oxygen and humidity stress.
View Article and Find Full Text PDFDalton Trans
March 2025
University of Houston, Department of Chemistry, Houston, TX 77204-5003, USA.
Four new mixed-anionic sodium methanesulfonate compounds were synthesized - Na(SOCH)(X) (X = (I) BF, (II) ClO, (III) PF, and (IV) I). Compounds I-III were grown as centimeter-size crystals under ambient conditions. Metal methanesulfonates (, MSOCH or M(SOCH)) are proposed as potential high-performance nonlinear optical materials owing to their large calculated bandgaps, local anisotropy, and large polarization.
View Article and Find Full Text PDFFaraday Discuss
March 2025
Korea Polar Research Institute, Incheon, 21990, Republic of Korea.
We present shipborne observations of volatile organic compounds such as dimethylsulfide (DMS), isoprene, acetaldehyde, acetone, and methanol over the Southern Ocean in April and May 2018. During the cruise, we encountered air masses influenced by the open ocean, coastal Antarctica, and sea ice. No direct correlation between oceanographic parameters and ambient distributions of VOCs is found.
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