Characterisation of spatial and temporal variability of RF-EMF exposure levels in urban environments in Flanders, Belgium
Autor: | Maarten Velghe, Arno Thielens, Reza Aminzadeh, Wout Joseph, Luc Martens, Senne Debouvere |
---|---|
Rok vydání: | 2019 |
Předmět: |
Working hours
AUSTRALIA Technology and Engineering Radio Waves 010501 environmental sciences 01 natural sciences Biochemistry Emf exposure 03 medical and health sciences Electromagnetic Fields 0302 clinical medicine Belgium 030212 general & internal medicine ON-BODY CALIBRATION Cities Radio-frequency electromagnetic fields 0105 earth and related environmental sciences General Environmental Science Measurement method PERSONAL EXPOSURE Environmental Exposure Repeatability ELECTROMAGNETIC-FIELD EXPOSURE Microenvironmental research Environmental science Physical geography Cell Phone EXPOSIMETERS |
Zdroj: | ENVIRONMENTAL RESEARCH |
ISSN: | 0013-9351 1096-0953 |
DOI: | 10.1016/j.envres.2019.05.027 |
Popis: | Personal exposure to Radio-Frequency Electromagnetic Fields (RF-EMFs) was studied using personal measurements in five different microenvironments in each of five cities (Brussels, Antwerp, Ghent, Bruges and Hasselt) in Flanders, Belgium. These measurements were carried out by two researchers using on-body calibrated personal exposimeters. In three out of the five studied cities (Brussels, Ghent and Bruges), temporal aspects of personal exposure to RF-EMFs were studied as well. Measurements during and outside of rush hours (7:00–9:15 and 16:30–19:00) were compared. Likewise, measurements were executed during night time and compared to the ones measured during working hours. Representativeness and repeatability of the measurement method was studied as well. The highest mean total exposure was found in Brussels (2.63 mW/m2), the most densely populated city in this study. However, we measured higher downlink exposure in Antwerp than in Brussels, which might be an effect of the stronger legislation on base stations in Brussels. The measurements and used protocol were found to be both repeatable over time (r = 0.95 for median total exposure) and representative for the studied microenvironments in terms of path selection (r = 0.88 for median total exposure). Finally, in 10 out of the 13 on-body calibrated frequency bands we found that the measurement devices underestimate the intensity of the incident RF-EMFs with median underestimations up to 68%. |
Databáze: | OpenAIRE |
Externí odkaz: |