Literature DB >> 9180064

Evaluation of the TEOM method for measurement of ambient particulate mass in urban areas.

G Allen1, C Sioutas, P Koutrakis, R Reiss, F W Lurmann, P T Roberts.   

Abstract

Increased interest in the health effects of ambient particulate mass (PM) has focused attention on the evaluation of existing mass measurement methodologies and the definition of PM in ambient air. The Rupprecht and Patashnick Tapered Element Oscillating MicroBalance (TEOM) method for PM is compared with time-integrated gravimetric (manual) PM methods in large urban areas during different seasons. Comparisons are conducted for both PM10 and PM2.5 concentrations. In urban areas, a substantial fraction of ambient PM can be semi-volatile material. A larger fraction of this component of PM10 may be lost from the TEOM-heated filter than the Federal Reference Method (FRM). The observed relationship between TEOM and FRM methods varied widely among sites and seasons. In East Coast urban areas during the summer, the methods were highly correlated with good agreement. In the winter, correlation was somewhat lower, with TEOM PM concentrations generally lower than the FRM. Rubidoux, CA, and two Mexican sites (Tlalnepantla and Merced) had the highest levels of PM10 and the largest difference between TEOM and manual methods. PM2.5 data from collocation of 24-hour manual samples with the TEOM are also presented. As most of the semi-volatile PM is in the fine fraction, differences between these methods are larger for PM2.5 than for PM10.

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Year:  1997        PMID: 9180064     DOI: 10.1080/10473289.1997.10463923

Source DB:  PubMed          Journal:  J Air Waste Manag Assoc        ISSN: 1096-2247            Impact factor:   2.235


  24 in total

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2.  The collection of PM10 for toxicological investigation: comparisons between different collecting devices.

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3.  Air pollution and emergency admissions in Boston, MA.

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4.  The composition of PM10 as collected by a conventional TEOM, a modified TEOM and a Partisol gravimetric monitor at a kerbside site in the North East of England.

Authors:  Susan Bulpitt; Monica Price
Journal:  Environ Monit Assess       Date:  2006-06-09       Impact factor: 2.513

5.  Intensive Short Term Measurements of the Ambient Aerosol in the Greater Cincinnati Airshed.

Authors:  Rafael McDonald; Shaohua Hu; Dainius Martuzevicius; Sergey A Grinshpun; Grace Lemasters; Pratim Biswas
Journal:  Aerosol Sci Technol       Date:  2004       Impact factor: 2.908

6.  Field Test of Several Low-Cost Particulate Matter Sensors in High and Low Concentration Urban Environments.

Authors:  Karoline K Johnson; Michael H Bergin; Armistead G Russell; Gayle S W Hagler
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7.  Predictors of indoor air concentrations in smoking and non-smoking residences.

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8.  Characterizing the performance of two optical particle counters (Grimm OPC1.108 and OPC1.109) under urban aerosol conditions.

Authors:  J Burkart; G Steiner; G Reischl; H Moshammer; M Neuberger; R Hitzenberger
Journal:  J Aerosol Sci       Date:  2010-10       Impact factor: 3.433

9.  Particulate air pollution as a risk factor for ST-segment depression in patients with coronary artery disease.

Authors:  Kai Jen Chuang; Brent A Coull; Antonella Zanobetti; Helen Suh; Joel Schwartz; Peter H Stone; Augusto Litonjua; Frank E Speizer; Diane R Gold
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10.  Air pollution and risk of stroke: underestimation of effect due to misclassification of time of event onset.

Authors:  R Peter Lokken; Gregory A Wellenius; Brent A Coull; Mary R Burger; Gottfried Schlaug; Helen H Suh; Murray A Mittleman
Journal:  Epidemiology       Date:  2009-01       Impact factor: 4.822

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