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Determination of fungal spore release from wet building materials
J Kildesø1, H Würtz, K F Nielsen
1National Institute of Occupational Health, Copenhagen, Denmark.
Abstract:
The release and transport of fungal spores from water-damaged building materials is a key factor for understanding the exposure to particles of fungal origin as a possible cause of adverse health effects associated to growth of fungi indoors. In this study, the release of spores from nine species of typical indoor fungi has been measured under controlled conditions. The fungi were cultivated for a period of 4-6 weeks on sterilized wet wallpapered gypsum boards at a relative humidity (RH) of approximately 97%. A specially designed small chamber (P-FLEC) was placed on the gypsum board. The release of fungal spores was induced by well-defined jets of air impacting from rotating nozzles. The spores and other particles released from the surface were transported by the air flowing from the chamber through a top outlet to a particle counter and sizer. For two of the fungi (Penicillium chrysogenum and Trichoderma harzianum), the number of spores produced on the gypsum board and subsequently released was quantified. Also the relationship between air velocities from 0.3 to 3 m/s over the surface and spore release has been measured. The method was found to give very reproducible results for each fungal isolate, whereas the spore release is very different for different fungi under identical conditions. Also, the relationship between air velocity and spore release depends on the fungus. For some fungi a significant number of particles smaller than the spore size were released. The method applied in the study may also be useful for field studies and for generation of spores for exposure studies.
Insights
Fungal spore release from building materials varies significantly between species. This study quantifies spore release under controlled conditions, revealing distinct patterns influenced by air velocity and fungal type.
Area of Science:
- Environmental Science
- Mycology
- Indoor Air Quality
Background:
- Fungal growth on water-damaged buildings can lead to indoor exposure.
- Understanding fungal spore release is crucial for assessing health risks.
- Previous research has not fully quantified release rates across various indoor fungi.
Purpose of the Study:
- To measure and compare fungal spore release from nine common indoor fungi.
- To investigate the impact of air velocity on spore release.
- To establish a reproducible method for quantifying fungal spore release.
Main Methods:
- Fungi were cultured on wet wallpapered gypsum boards at high relative humidity (97%).
- A specialized chamber (P-FLEC) was used to induce spore release with controlled air jets.
- Released spores were collected and analyzed using a particle counter and sizer.
Main Results:
- Spore release varied significantly among the nine fungal species tested.
- Air velocity (0.3–3 m/s) influenced spore release differently for each fungus.
- Reproducible results were obtained for each fungal isolate, validating the method.
- Quantification of spore release was achieved for Penicillium chrysogenum and Trichoderma harzianum.
- Some fungi released particles smaller than their spores.
Conclusions:
- The developed method provides reproducible quantification of fungal spore release.
- Fungal spore release is species-specific and influenced by air velocity.
- This technique is valuable for field studies and exposure assessments related to indoor fungi.
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