4.5 Article

Chemical composition of ambient particulate matter and redox activity

期刊

ENVIRONMENTAL MONITORING AND ASSESSMENT
卷 169, 期 1-4, 页码 597-606

出版社

SPRINGER
DOI: 10.1007/s10661-009-1199-8

关键词

Particulate matter; Ultrafine particles; Reactive oxygen species; Redox potential; Polycyclic aromatic hydrocarbons

资金

  1. Jeffress Memorial Trust
  2. ODU College of Health Sciences

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Exposure to ambient particulate matter (PM) has been associated with a number of adverse health effects. Increasing studies have suggested that such adverse health effects may derive from oxidative stress, initiated by the formation of reactive oxygen species (ROS) within affected cells. The study aimed to assess physical characteristics and chemical compositions of PM and to correlate the results to their redox activity. PM2.5 (mass aerodynamic diameter a parts per thousand currency sign2.5 mu m) and ultrafine particles (UFPs, mass media aerodynamic diameter < 0.1 mu m) were collected in an urban area, which had heavy traffic and represented ambient air pollution associated with vehicle exhaust. Background samples were collected in a rural area, with low traffic flow. Organic carbon (OC), elemental carbon (EC), polycyclic aromatic hydrocarbons (PAHs), and metals were analyzed. The dithiothreitol activity assay was used to measure the redox activity of PM. Results showed that UFPs have higher concentrations of OC, EC, and PAHs than those of PM2.5. Several metals, including Fe, Cu, Zn, Ti, Pb, and Mn, were detected. Among them, Cu had the highest concentrations, followed by Fe and Zn. Organic carbon constituted 22.8% to 59.7% of the content on the surface of PM2.5 and UFPs. Our results showed higher redox activity on a per PM mass basis for UFPs as compared to PM2.5. Linear multivariable regression analyses showed that redox activity highly correlated with PAH concentrations and organic compounds, and insignificantly correlated with EC and metals, except soluble Fe, which increased redox activity in particle suspension due to the presence of ROS.

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