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Wang, Ji-Xiang; Wu, Zhe; Wang, Hongmei; Zhong, Mingliang; Mao, Yufeng; Li, Yunyun; Wang, Mengxiao; Yao, Shuhuai
Journal of hazardous materials, 10/2022, Volume: 439Journal Article
Converging evidence reports that the probability of vertical transmission patterns via shared drainage systems, may be responsible for the huge contactless community outbreak in high-rise buildings. Publications indicate that a faulty bathroom exhaust fan system is ineffective in removing lifted hazardous virus-laden aerosols from the toilet bowl space. Common strategies (boosting ventilation capability and applying disinfection tablets) seem unsustainable and remain to date untested. Using combined simulation and experimental approaches, we compared three ventilation schemes in a family bathroom including the traditional ceiling fan, floor fan, and side-wall fan. We found that the traditional ceiling fan was barely functional whereby aerosol particles were not being adequately removed. Conversely, a side-wall fan could function efficiently and an enhanced ventilation capability can have increased performance whereby nearly 80.9% of the lifted aerosol particles were removed. There exists a common, and easily-overlooked mistake in the layout of the bathroom, exposing occupants to a contactless vertical pathogen aerosol transmission route. Corrections and dissemination are thus imperative for the reconstruction of these types of family bathrooms. Our findings provide evidence for the bathroom and smart ventilation system upgrade, promoting indoor public health and human hygiene. Display omitted •Traditional ceiling fan fails to remove hazardous plume in bathrooms.•Ventilation deficiency should be responsible for the vertical COVID transmission.•A side-wall fan has the most efficient aerosol removal capability.•In-site experimental conclusions were coherent with the simulation ones.•Bathroom ventilation reconstructions are encouraged to be performed accordingly.
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