PMID: 11321908Apr 27, 2001Paper

Development and evaluation of an impactor for a PM2.5 speciation sampler

Journal of the Air & Waste Management Association
P DemokritouP Koutrakis

Abstract

A conventional impactor for a particle speciation sampler was developed and validated through laboratory and field tests. The speciation sampler consists of the following components: a PM2.5 conventional impactor that removes particles larger than 2.5 microns, an all-glass, coated honeycomb diffusion denuder, and a 47-mm filter pack. The speciation sampler can operate at two different sampling rates: 10 and 16.7 L/min. An experimental characterization of the impactor's performance was conducted. The impactor's collection efficiency was examined as a function of critical design parameters such as Reynolds number, the distance from the nozzle exit to the impaction plate, and the impaction substrate coating method. The bounce of particles larger than the cut point was successfully minimized by using a greased surface as the impaction substrate. Additionally, a series of field intercomparison experiments were conducted at both 10 and 16.7 L/min airflow. PM2.5 mass and SO4(2-) concentrations were measured and compared with the Federal Reference Method (FRM) and found to be in good agreement. Results of the laboratory chamber tests also indicated that the impactor's performance was in good agreement with the FRM.

Citations

Oct 31, 2013·Journal of Exposure Science & Environmental Epidemiology·Rima HabrePetros Koutrakis
Apr 10, 2014·Journal of Exposure Science & Environmental Epidemiology·Rima HabrePetros Koutrakis
Apr 3, 2016·The Science of the Total Environment·Piers MacNaughtonDouglas E Levy
Jun 7, 2011·The Science of the Total Environment·Tarun GuptaShefali Dubey
Mar 5, 2013·The Journal of Immunology : Official Journal of the American Association of Immunologists·Bertram BleckJoan Reibman

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