4.6 Article

The influence of sampling duration on recovery of culturable fungi using the Andersen N6 and RCS bioaerosol samplers

期刊

INDOOR AIR
卷 18, 期 6, 页码 464-472

出版社

WILEY
DOI: 10.1111/j.1600-0668.2008.00547.x

关键词

Fungi; Air sampling; Water activity; Indoor air quality; Bioaerosols

资金

  1. Centre for Research Expertise in Occupational Disease (CREOD),
  2. Workplace Safety and Insurance Board of Ontario
  3. Sporometrics Inc., Toronto, Canada
  4. RWR Scientific Ltd., Ottawa, Canada

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The influence of sampling duration on recovery of culturable fungi was compared using the Andersen N6 and the Reuter Centrifugal Sampler (RCS). Samplers were operated side-by-side, collecting 15 samples each of incrementally increasing duration (1-15 min). From 270 samples collected, 26 fungal genera were recovered. Species of Alternaria, Aspergillus, Cladosporium, Epicoccum, Penicillium and Ulocladium were most frequent. Data adjusted to CFU/m(3) were fitted to a Poisson regression model with a logarithmic link function and evaluated for the impact of sampling time on qualitative and quantitative recovery of fungi, both as individual taxa and in aggregate according to xerotolerance. Significant differences between the two samplers were observed for xerotolerant and normotolerant moulds, as well as Aspergillus spp. and Cladosporium spp. With the exception of Cladosporium spp., overall recoveries were higher with the RCS. When the Andersen N6 was used, the recovered levels of Cladosporium spp. and unidentified yeasts were reduced significantly at sampling times over 6 min. Similarly, when the RCS was used, recovery of Aspergillus spp., Penicillium spp., Ulocladium spp., unidentified yeasts, and low water activity fungi declined significantly at sampling times over 6 min.Currently, the industry-wide trend for viable air sampling in indoor environmental investigations is to use sampling times between 2 and 4 min in duration. Our results support the routine use of a 6-min sampling time where low spore loads are expected, resulting in improved limits of detection.

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