Observations and Interpretations from the Canadian Fine Particle Monitoring Program.

J Air Waste Manag Assoc

c Montreal Public Health Department , Occupational and Environmental Health Unit , Montreal , Quebec , Canada.

Published: September 1999

Canadian particle monitoring programs examining PM10, PM2.5, and particle composition have been in operation for over 10 years. Until recently, the measurements were manual/filter-based with 24-hr sample collection varying in frequency from daily to every sixth day, using GrasebyAnderson dichotomous samplers. In the past few years, these monitoring activities have been expanded to include hourly measurements using tapered element oscillating microbalances (TEOMs). This continuous monitoring program started operation focusing on PM but now emphasizes PM through the addition of more TEOMs and switching of the inlets of some of the existing units. The data from all of these measurement activities show that there are broad geographical differences and also local- to regional-scale spatial differences in mass and composition of PM2.5. Due to variations in sources, significantly different PM2.5 concentrations are not uncommon within the same city. Comparison of nearby urban and rural sites indicates that 30 and 40% of the PM is from local urban sources in Montreal and Toronto, respectively. Hourly PM measurements in Toronto suggest that vehicular emissions are an important contributor to urban PM There has been a decreasing trend in urban PM with annual average concentrations between the 1987-1990 and 1993-1995 periods decreasing by 11 to 39%, depending upon the site. The largest declines were in Montreal and Halifax, and the smallest decline was in Toronto. Comparison of 24-hr TEOM and manual dichotomous sampler PM measurements from a site in Toronto indicates that the TEOM results in lower concentrations. The magnitude of this difference is relatively small in the warmer months, averaging about 12%. During the colder months the difference averages about 23%, but can be as large as 50%.

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http://dx.doi.org/10.1080/10473289.1999.10463884DOI Listing

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