Physicochemical characterisation of combustion particles from vehicle exhaust and residential wood smoke
Open Access
- 3 January 2006
- journal article
- research article
- Published by Springer Nature in Particle and Fibre Toxicology
- Vol. 3 (1) , 1
- https://doi.org/10.1186/1743-8977-3-1
Abstract
Background: Exposure to ambient particulate matter has been associated with a number of adverse health effects. Particle characteristics such as size, surface area and chemistry seem to influence the negative effects of particles. In this study, combustion particles from vehicle exhaust and wood smoke, currently used in biological experiments, were analysed with respect to microstructure and chemistry. Methods: Vehicle exhaust particles were collected in a road tunnel during two seasons, with and without use of studded tires, whereas wood smoke was collected from a stove with single-stage combustion. Additionally, a reference diesel sample (SRM 2975) was analysed. The samples were characterised using transmission electron microscopy techniques (TEM/HRTEM, EELS and SAED). Furthermore, the elemental and organic carbon fractions were quantified using thermal optical transmission analysis and the content of selected PAHs was determined by gas chromatography-mass spectrometry. Results: Carbon aggregates, consisting of tens to thousands of spherical primary particles, were the only combustion particles identified in all samples using TEM. The tunnel samples also contained mineral particles originating from road abrasion. The geometric diameters of primary carbon particles from vehicle exhaust were found to be significantly smaller (24 ± 6 nm) than for wood smoke (31 ± 7 nm). Furthermore, HRTEM showed that primary particles from both sources exhibited a turbostratic microstructure, consisting of concentric carbon layers surrounding several nuclei in vehicle exhaust or a single nucleus in wood smoke. However, no differences were detected in the graphitic character of primary particles from the two sources using SAED and EELS. The total PAH content was higher for combustion particles from wood smoke as compared to vehicle exhaust, whereas no source difference was found for the ratio of organic to total carbon. Conclusion: Combustion particles from vehicle exhaust and residential wood smoke differ in primary particle diameter, microstructure, and PAH content. Furthermore, the analysed samples seem suitable for assessing the influence of physicochemical characteristics of particles on biological responses.Keywords
This publication has 45 references indexed in Scilit:
- Atmospheric tar balls: Particles from biomass and biofuel burningJournal of Geophysical Research: Atmospheres, 2004
- Effect of diesel exhaust particulate (DEP) on immune responses: contributions of particulate versus organic soluble componentsJournal of Toxicology and Environmental Health, Part A, 2004
- Evaluation of elemental carbon as a marker for diesel particulate matterJournal of Exposure Science & Environmental Epidemiology, 2003
- Size-Dependent Proinflammatory Effects of Ultrafine Polystyrene Particles: A Role for Surface Area and Oxidative Stress in the Enhanced Activity of UltrafinesToxicology and Applied Pharmacology, 2001
- MINERAL AND/OR METAL CONTENT AS CRITICAL DETERMINANTS OF PARTICLE-INDUCED RELEASE OF IL-6 AND IL-8 FROM A549 CELLSJournal of Toxicology and Environmental Health, Part A, 2000
- Bioassay-Directed Chemical Analysis of Los Angeles Airborne Particulate Matter Using a Human Cell Mutagenicity AssayEnvironmental Science & Technology, 1998
- Human Cell Mutagens in Los Angeles AirEnvironmental Science & Technology, 1997
- City air pollution of polycyclic aromatic hydrocarbons and other mutagens: occurrence, sources and health effectsScience of The Total Environment, 1996
- Effect of Oxidation on the Microstructure of Carbon BlacksEnergy & Fuels, 1996
- Microstructure of Carbon BlackRubber Chemistry and Technology, 1964