Gao et al., 2015 - Google Patents
Penetration of combustion aerosol particles through filters of NIOSH-certified filtering facepiece respirators (FFRs)Gao et al., 2015
View HTML- Document ID
- 18064395323217156188
- Author
- Gao S
- Kim J
- Yermakov M
- Elmashae Y
- He X
- Reponen T
- Grinshpun S
- Publication year
- Publication venue
- Journal of occupational and environmental hygiene
External Links
Snippet
Filtering facepiece respirators (FFRs) are commonly worn by first responders, first receivers, and other exposed groups to protect against exposure to airborne particles, including those originated by combustion. Most of these FFRs are NIOSH-certified (eg, N95-type) based on …
- 239000002245 particle 0 title abstract description 170
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Wang et al. | Modeling the load of SARS-CoV-2 virus in human expelled particles during coughing and speaking | |
Gao et al. | Penetration of combustion aerosol particles through filters of NIOSH-certified filtering facepiece respirators (FFRs) | |
Hao et al. | Factors influencing the filtration performance of homemade face masks | |
Drossinos et al. | What aerosol physics tells us about airborne pathogen transmission | |
Konda et al. | Aerosol filtration efficiency of common fabrics used in respiratory cloth masks | |
Morais et al. | Filtration efficiency of a large set of COVID-19 face masks commonly used in Brazil | |
BAŁAZY et al. | Manikin-based performance evaluation of N95 filtering-facepiece respirators challenged with nanoparticles | |
Li et al. | Assessing the effectiveness of using various face coverings to mitigate the transport of airborne particles produced by coughing indoors | |
He et al. | Effect of particle size on the performance of an N95 filtering facepiece respirator and a surgical mask at various breathing conditions | |
Kriegel et al. | SARS-CoV-2 aerosol transmission indoors: a closer look at viral load, infectivity, the effectiveness of preventive measures and a simple approach for practical recommendations | |
Mills et al. | Comparison of the DiSCmini aerosol monitor to a handheld condensation particle counter and a scanning mobility particle sizer for submicrometer sodium chloride and metal aerosols | |
Bagheri et al. | Filtration efficiency, breathability, and reusability of improvised materials for face masks | |
Rengasamy et al. | A comparison of total inward leakage measured using sodium chloride (NaCl) and corn oil aerosol methods for air-purifying respirators | |
Guha et al. | Quantification of leakage of sub-micron aerosols through surgical masks and facemasks for pediatric use | |
Gao et al. | Performance of N95 FFRs against combustion and NaCl aerosols in dry and moderately humid air: Manikin-based study | |
Amendola et al. | A rapid screening method for testing the efficiency of masks in breaking down aerosols | |
Elmashae et al. | Surgical smoke simulation study: physical characterization and respiratory protection | |
He et al. | Manikin-based performance evaluation of elastomeric respirators against combustion particles | |
Bahloul et al. | Evaluation of N95 filtering facepiece respirator efficiency with cyclic and constant flows | |
Rengasamy et al. | Evaluation of the filtration performance of NIOSH-approved N95 filtering facepiece respirators by photometric and number-based test methods | |
Rengasamy et al. | Nanoparticle filtration performance of filtering facepiece respirators and canister/cartridge filters | |
Rengasamy et al. | Nanoparticle filtration performance of NIOSH-certified particulate air-purifying filtering facepiece respirators: evaluation by light scattering photometric and particle number-based test methods | |
Sipkens et al. | Comparison of measurement systems for assessing number-and mass-based particle filtration efficiency | |
Lee et al. | Performance evaluation of commercially available masks in Korea for filtering airborne droplets containing bacteria | |
Pogačnik Krajnc et al. | Size-and time-dependent particle removal efficiency of face masks and improvised respiratory protection equipment used during the COVID-19 pandemic |