School of Civil Engineering and Architecture, Linyi University, Linyi 276000, China.
School of Civil Engineering and Architecture, Linyi University, Linyi 276000, China.
Sci Total Environ. 2022 May 10;820:153003. doi: 10.1016/j.scitotenv.2022.153003. Epub 2022 Jan 11.
Fungi in indoor environments can cause adverse health effects through inhalation and epidermal exposure. The risk of fungal exposure originates from the aerosolization of fungal spores. However, spore aerosolization is still not well understood. This paper provides a review of indoor fungal contamination, especially the aerosolization of fungal spores. We attempted to summarize what is known today and to identify what more information is needed to predict the aerosolization of fungal spores. This paper first reviews fungal contamination in indoor environments and HVAC systems. The detachment of fungal spores from colonies and the spore aerosolization principle are then summarized. Based on the above discussion, prediction methods for spore aerosolization are discussed. This review further clarifies the current situation and future efforts required to accurately predict spore aerosolization. This information is useful for forecasting and controlling the aerosolization of fungal spores.
室内环境中的真菌可通过吸入和表皮暴露对健康产生不良影响。真菌暴露的风险源自真菌孢子的气溶胶化。然而,孢子气溶胶化的机制仍未得到充分理解。本文综述了室内真菌污染,特别是真菌孢子的气溶胶化。我们试图总结目前已知的知识,并确定需要更多信息来预测真菌孢子的气溶胶化。本文首先综述了室内环境和暖通空调系统中的真菌污染。然后总结了真菌孢子从菌落上的脱落和孢子气溶胶化的原理。基于上述讨论,探讨了孢子气溶胶化的预测方法。本综述进一步阐明了准确预测孢子气溶胶化所需的现状和未来努力。这些信息对于预测和控制真菌孢子的气溶胶化是有用的。