Literature DB >> 24247528

Progress on understanding spatial and temporal variability of PM(2.5) and its components in the Detroit Exposure and Aerosol Research Study (DEARS).

Carvin Stevens1, Ron Williams, Paul Jones.   

Abstract

The Detroit Exposure and Aerosol Research Study (DEARS) measured personal exposures, ambient, residential indoor and residential outdoor concentrations of select PM2.5 aerosol components (SO4, NO3, Fe, Si, Ca, K, Mn, Pb, Zn, EC and OC) over a three year period (2004-2007). These events represented approximately 190 calendar days of monitoring which was performed in seven residential neighborhoods throughout Wayne County, MI. The selection of neighborhoods and participants for study inclusion was based upon an a priori hypothesis that each neighborhood represented a potentially distinct air quality scenario being influenced by both regional as well as local pollution sources. Daily (24 h integrated) measurement data were used to evaluate the spatial and temporal PM2.5 compositional variability of the personal, indoor and outdoor spatial settings as they related to a central ambient monitoring site (Allen Park). Many of the PM2.5 components were observed to have spatially different outdoor mass concentrations in matched neighborhood by neighborhood comparisons, with sulfate, OC, and NO3 being noted exceptions. Coefficient of divergence (COD) comparisons involving outdoor measures for Ca, Si, Fe, Zn, Pb, and EC revealed significant spatial variability. While concentrations of most components were lower indoors as compared to outdoor measures, K and Si indoor concentrations often reflected aerosol enrichment (indoor/outdoor ratios ≥ 1.2). Even when personal exposures were adjusted for day to day changes in ambient concentrations, certain components (Ca, Fe, Mn, Zn, among others) revealed a high degree of location-specific spatial variability suggesting the influences of personal activities and/or local source influences on total personal PM2.5 exposures. As a whole, findings indicate that reliance on a central ambient monitor as a surrogate for total personal and potentially even residential outdoor estimates of PM2.5 aerosol composition may provide an undesirable degree of exposure uncertainty for health-based risk estimates. The focus of this paper is on the spatial variability and uncertainty in using a central monitoring site to estimate exposures. Additional information concerning the DEARS can be found at http://www.epa.gov/DEARS/.

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Year:  2014        PMID: 24247528     DOI: 10.1039/c3em00364g

Source DB:  PubMed          Journal:  Environ Sci Process Impacts        ISSN: 2050-7887            Impact factor:   4.238


  4 in total

1.  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
Journal:  Aerosol Air Qual Res       Date:  2018       Impact factor: 3.063

2.  Overall health impacts of a potential increase in cycle commuting in Stockholm, Sweden.

Authors:  Johan Nilsson Sommar; Christer Johansson; Boel Lövenheim; Peter Schantz; Anders Markstedt; Magnus Strömgren; Helena Stigson; Bertil Forsberg
Journal:  Scand J Public Health       Date:  2021-05-12       Impact factor: 3.199

Review 3.  Spatial and Temporal Dynamics in Air Pollution Exposure Assessment.

Authors:  Daniela Dias; Oxana Tchepel
Journal:  Int J Environ Res Public Health       Date:  2018-03-20       Impact factor: 3.390

4.  Potential Effects on Travelers' Air Pollution Exposure and Associated Mortality Estimated for a Mode Shift from Car to Bicycle Commuting.

Authors:  Johan Nilsson Sommar; Christer Johansson; Boel Lövenheim; Anders Markstedt; Magnus Strömgren; Bertil Forsberg
Journal:  Int J Environ Res Public Health       Date:  2020-10-20       Impact factor: 3.390

  4 in total

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