Assessment of the aerosolization potential for fungal spores in moldy homes

S K Sivasubramani1, R T Niemeier, T Reponen

  • 1Center for Health-Related Aerosol Studies, Department of Environmental Health, University of Cincinnati, Cincinnati, OH 45267-0056, USA. sergey.grinshpun@uc.edu

Indoor Air
|October 27, 2004
PubMed
Abstract

Insights

A new Fungal Spore Source Strength Tester (FSSST) effectively measures mold's potential to release airborne spores. This tool provides a better assessment of indoor fungal exposure than traditional methods.

Area of Science:

  • Environmental Science
  • Mycology
  • Indoor Air Quality

Background:

  • Airborne fungal concentrations may not accurately reflect indoor air quality due to sporadic spore release.
  • Conventional methods like swab sampling assess mold but not aerosolization potential.
  • A novel Fungal Spore Source Strength Tester (FSSST) was developed to evaluate spore release potential.

Purpose of the Study:

  • To characterize fungal spore release from building materials using the FSSST.
  • To compare FSSST-derived airborne spore concentrations with actual air sampling measurements.
  • To assess the FSSST's utility in evaluating indoor fungal exposure and intervention effectiveness.

Main Methods:

  • The FSSST was used to test spore aerosolization from four building materials in homes with mold problems.
  • Spore release rates were measured under optimal release conditions.
  • Airborne spore concentrations were estimated from release rate data and compared with simultaneous air sampling.

Main Results:

  • The FSSST efficiently aerosolized spores from different species, with release rates from 10^2 to 10^3 cm²/min.
  • Less than 2% of surface spores were released during testing for all materials.
  • Estimated airborne spore concentrations often exceeded those measured by air sampling.

Conclusions:

  • The FSSST is suitable for measuring the aerosolization potential of indoor fungal sources under optimal conditions.
  • The FSSST provides a more accurate representation of airborne fungal exposure by bridging air sampling and source evaluation.
  • The FSSST can be used to assess maximum potential exposure, evaluate interventions, and analyze the release of other hazardous particles.