Field evaluation of a personal cascade impactor sampler (PCIS)
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[1] T. Peters,et al. Comparison and Combination of Aerosol Size Distributions Measured with a Low Pressure Impactor, Differential Mobility Particle Sizer, Electrical Aerosol Analyzer, and Aerodynamic Particle Sizer , 1993 .
[2] Xin Wang,et al. The Relationship between Mass and Mobility for Atmospheric Particles: A New Technique for Measuring Particle Density , 2002 .
[3] William C. Hinds,et al. A Low Velocity Wind Tunnel to Evaluate Inhalability and Sampler Performance for Large Dust Particles , 1995 .
[4] P. Mcmurry,et al. Theoretical analysis of evaporative losses from impactor and filter deposits , 1987 .
[5] C A Clayton,et al. Particle Total Exposure Assessment Methodology (PTEAM) 1990 study: method performance and data quality for personal, indoor, and outdoor monitoring. , 1993, Journal of exposure analysis and environmental epidemiology.
[6] A. Nel,et al. Ultrafine particulate pollutants induce oxidative stress and mitochondrial damage. , 2002, Environmental health perspectives.
[7] Ilhan Olmez,et al. Physical and Chemical Characterization of Atmospheric Ultrafine Particles in the Los Angeles Area , 1998 .
[8] R. Harrison,et al. Atmospheric aerosol major ion composition and cloud condensation nuclei over the northeast Atlantic , 1996 .
[9] D. Bates,et al. The Ontario Air Pollution Study: identification of the causative agent. , 1989, Environmental health perspectives.
[10] Kazuhiko Ito,et al. A multi-year study of air pollution and respiratory hospital admissions in three New York State metropolitan areas: results for 1988 and 1989 summers. , 1992, Journal of exposure analysis and environmental epidemiology.
[11] J D Spengler,et al. Health effects of acid aerosols on North American children: pulmonary function. , 1996, Environmental health perspectives.
[12] R. Burnett,et al. Acute lung function responses to ambient acid aerosol exposures in children. , 1989, Environmental health perspectives.
[13] J. Schauer,et al. Source reconciliation of atmospheric gas-phase and particle-phase pollutants during a severe photochemical smog episode. , 2002, Environmental science & technology.
[14] D. Dockery,et al. Particulate air pollution and daily mortality in Steubenville, Ohio. , 1992, American journal of epidemiology.
[15] P. Koutrakis,et al. The relationship between airborne acidity and ammonia in indoor environments. , 1994, Journal of exposure analysis and environmental epidemiology.
[16] D. Dockery,et al. An association between air pollution and mortality in six U.S. cities. , 1993, The New England journal of medicine.
[17] P. Koutrakis,et al. Development and Laboratory Performance Evaluation of a Personal Cascade Impactor , 2002, Journal of the Air & Waste Management Association.
[18] C. Sioutas,et al. Development and evaluation of a personal cascade impactor sampler (PCIS) , 2002 .
[19] W. Hinds,et al. Comparison of a Simplified and Full-Size Mannequin for the Evaluation of Inhalable Sampler Performance , 2001 .
[20] Martin L Williams,et al. Measurement of respiratory morbidity in general practice in the United Kingdom during the acid transport event of January 1985. , 1989, Environmental health perspectives.
[21] K. Fung,et al. Particulate Carbon Speciation by MnO2 Oxidation , 1990 .
[22] J. Xue,et al. Particulate air pollution and respiratory disease in Anchorage, Alaska. , 1996, Environmental health perspectives.
[23] M. Stolzenburg,et al. Automated Measurement of the Size and Concentration of Airborne Particulate Nitrate , 2003 .
[24] V A Marple,et al. A personal cascade impactor: design, evaluation and calibration. , 1987, American Industrial Hygiene Association journal.
[25] D V Bates,et al. Asthma attack periodicity: a study of hospital emergency visits in Vancouver. , 1990, Environmental research.
[26] Yifang Zhu,et al. Evaluation of the SMPS–APS system as a continuous monitor for measuring PM2.5, PM10 and coarse (PM2.5−10) concentrations , 2002 .