Published April 2018 | Version v1
Journal article

Vertical variation of PM2.5 mass and chemical composition, particle size distribution, NO2, and BTEX at a high rise building

  • 1. Regional Centre for Environment and Health, ARPAE Emilia-Romagna, Via Begarelli, 13, 41121 Modena (Italy)
  • 2. Regional Centre for Urban Areas, ARPAE Emilia-Romagna, Via Rocchi, 19, 40138 Bologna (Italy)
  • 3. Provincial District of Ravenna, ARPAE Emilia-Romagna, Via Giulio Alberoni17, 48121 Ravenna (Italy)

Description

Highlights: • Evaluation of the vertical variation of air pollution at a high rise building. • Various particle metrics and gaseous pollutants measured at different heights. • Measurements conducted in different seasons. • Strong vertical gradients for traffic-related pollutants and particle metrics. • Relevant vertical gradients for NO2, BTEX, UFP, Elemental Carbon, Iron and Tin. Substantial efforts have been made in recent years to investigate the horizontal variability of air pollutants at regional and urban scales and epidemiological studies have taken advantage of resulting improvements in exposure assessment. On the contrary, only a few studies have investigated the vertical variability and their results are not consistent. In this study, a field experiment has been conducted to evaluate the variation of concentrations of different particle metrics and gaseous pollutants on the basis of floor height at a high rise building. Two 15-day monitoring campaigns were conducted in the urban area of Bologna, Northern Italy, one of the most polluted areas in Europe. Measurements sites were operated simultaneously at 2, 15, 26, 44 and 65 m a.g.l. Several particulate matter metrics including PM2.5 mass and chemical composition, particle number concentration and size distribution were measured. Time integrated measurement of NO2 and BTEX were also included in the monitoring campaigns. Measurements showed relevant vertical gradients for most traffic related pollutants. A monotonic gradient of PM2.5 was found with ground-to-top differences of 4% during the warm period and 11% during the cold period. Larger gradients were found for UFP (∼30% during both seasons) with a substantial loss of particles from ground to top in the sub-50 nm size range. The largest drops in concentrations for chemical components were found for Elemental Carbon (−27%), iron (−11%) and tin (−36%) during winter. The ground-to-top decline of concentrations for NO2 and benzene during winter was equal to 74% and 35%, respectively. In conclusion, our findings emphasize the need to include vertical variations of urban air pollutants when evaluating population exposure and associated health effects, especially in relation to some traffic related pollutants and particle metrics.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.envpol.2017.12.090

Additional details

Identifiers

DOI
10.1016/j.envpol.2017.12.090;
PII
S0269749117320134;

Publishing Information

Journal Title
Environmental Pollution (1987)
Journal Volume
235
Journal Page Range
p. 339-349
ISSN
0269-7491
CODEN
ENPOEK

Optional Information

Copyright
Copyright (c) 2017 Elsevier Ltd. All rights reserved.