Literature DB >> 11051537

Personal exposure to particles in Banská Bystrica, Slovakia.

M Brauer1, F Hrubá, E Mihalíková, E Fabiánová, P Miskovic, A Plziková, M Lendacká, J Vandenberg, A Cullen.   

Abstract

Epidemiological studies have associated adverse health impacts with ambient concentrations of particulate matter (PM), though these studies have been limited in their characterization of personal exposure to PM. An exposure study of healthy nonsmoking adults and children was conducted in Banska Bystrica, Slovakia, to characterize the range of personal exposures to air pollutants and to determine the influence of occupation, season, residence location, and outdoor and indoor concentrations on personal exposures. Twenty-four-hour personal, at-home indoor, and ambient measurements of PM10, PM2.5, sulfate (SO4(2-)) and nicotine were obtained for 18 office workers, 16 industrial workers, and 15 high school students in winter and summer. Results showed that outdoor levels of pollutants were modest, with clear seasonal differences: outdoor PM10 summer/winter mean = 35/45 microg/m3; PM2.5 summer/winter mean = 22/32 microg/m3. SO4(2-) levels were low (4-7 microg/m3) and relatively uniform across the different sample types (personal, indoor, outdoor), areas, and occupational groups. This suggests that SO4(2-) may be a useful marker for combustion mode particles of ambient origin, although the relationship between personal exposures and ambient SO4(2-) levels was more complex than observed in North American settings. During winter especially, the central city area showed higher concentrations than the suburban location for outdoor, personal, and indoor measures of PM10, PM2.5, and to a lesser extent for SO4(2-), suggesting the importance of local sources. For PM2.5 and PM10, ratios consistent with expectations were found among exposure indices for all three subject groups (personal>indoor>outdoor), and between work type (industrial>students>office workers). The ratio of PM2.5 personal to indoor exposures ranged from 1.0 to 3.9 and of personal to outdoor exposures from 1.6 to 4.2. The ratio of PM10 personal to indoor exposures ranged from 1.1 to 2.9 and the ratio of personal to outdoor exposures from 2.1 to 4.1. For a combined group of office workers and students, personal PM10/PM2.5 levels were predicted by statistically significant multivariate models incorporating indoor (for PM2.5) or outdoor (for PM10) PM levels, and nicotine exposure (for PM10). Small but significant fractions of the overall variability, 15% for PM2.5 and 17% for PM10, were explained by these models. The results indicate that central site monitors underpredict actual human exposures to PM2.5 and PM10. Personal exposure to SO4(2-) was found to be predicted by outdoor or indoor SO4(2-) levels with 23-71% of the overall variability explained by these predictors. We conclude that personal exposure measurements and additional demographic and daily activity data are crucial for accurate evaluation of exposure to particles in this setting.

Entities:  

Mesh:

Substances:

Year:  2000        PMID: 11051537     DOI: 10.1038/sj.jea.7500136

Source DB:  PubMed          Journal:  J Expo Anal Environ Epidemiol        ISSN: 1053-4245


  5 in total

1.  Environmental impacts of commuting modes in Lisbon: a life-cycle assessment addressing particulate matter impacts on health.

Authors:  Joana Bastos; Pedro Marques; Stuart A Batterman; Fausto Freire
Journal:  Int J Sustain Transp       Date:  2018-09-23

2.  Assessment of personal and community-level exposures to particulate matter among children with asthma in Detroit, Michigan, as part of Community Action Against Asthma (CAAA).

Authors:  Gerald J Keeler; Timothy Dvonch; Fuyuen Y Yip; Edith A Parker; Barbara A Isreal; Frank J Marsik; Masako Morishita; James A Barres; Thomas G Robins; Wilma Brakefield-Caldwell; Mathew Sam
Journal:  Environ Health Perspect       Date:  2002-04       Impact factor: 9.031

Review 3.  Airborne environmental injuries and human health.

Authors:  Andrea T Borchers; Christopher Chang; Carl L Keen; M Eric Gershwin
Journal:  Clin Rev Allergy Immunol       Date:  2006-08       Impact factor: 8.667

Review 4.  Indoor Exposure to Selected Air Pollutants in the Home Environment: A Systematic Review.

Authors:  Sotiris Vardoulakis; Evanthia Giagloglou; Susanne Steinle; Alice Davis; Anne Sleeuwenhoek; Karen S Galea; Ken Dixon; Joanne O Crawford
Journal:  Int J Environ Res Public Health       Date:  2020-12-02       Impact factor: 3.390

5.  The effects of outdoor air pollution on chronic illnesses.

Authors:  Hong Chen; Mark S Goldberg
Journal:  Mcgill J Med       Date:  2009-01
  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.