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Use of portable exposimeters to monitor radiofrequency electromagnetic field exposure in the everyday environment

机译:使用便携式测光仪监测日常环境中的射频电磁场暴露

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摘要

Background: Spatial and temporal distribution of radiofrequency electromagnetic field (RF-EMF) levels in the environment is highly heterogeneous. It is thus not entirely clear how to monitor spatial variability and temporal trends of RF-EMF exposure levels in the environment in a representative and efficient manner. The aim of this study was to test a monitoring protocol for RF-EMF measurements in public areas using portable devices. Methods: Using the ExpoM-RF devices mounted on a backpack, we have conducted RF-EMF measurements by walking through 51 different outdoor microenvironments from 20 different municipalities in Switzerland: 5 different city centers, 5 central residential areas, 5 non-central residential areas, 15 rural residential areas, 15 rural centers and 6 industrial areas. Measurements in public transport (buses, trains, trams) were collected when traveling between the areas. Measurements were conducted between 25th March and 11 th July 2014. In order to evaluate spatial representativity within one microenvironment, we measured two crossing paths of about 1 km in length in each microenvironment. To evaluate repeatability, measurements in each microenvironment were repeated after two to four months on the same paths. Results: Mean RF-EMF exposure (sum of 15 main frequency bands between 87.5 and 5,875 MHz) was 0.53 V/m in industrial zones, 0.47 V/m in city centers, 0.32 V/m in central residential areas, 0.25 V/m non-central residential areas, 0.23 V/m in rural centers and rural residential areas, 0.69 V/m in trams, 0.46 V/ m in trains and 0.39 V/m in buses. Major exposure contribution at outdoor locations was from mobile phone base stations (> 80% for all outdoor areas with respect to the power density scale). Temporal correlation between first and second measurement of each area was high: 0.89 for total RF-EMF, 0.90 for all five mobile phone downlink bands combined, 0.51 for all five uplink bands combined and 0.79 for broadcasting. Spearman correlation between arithmetic mean values of the first path compared to arithmetic mean of the second path within the same microenvironment was 0.75 for total RF-EMF, 0.76 for all five mobile phone downlink bands combined, 0.55 for all five uplink bands combined and 0.85 for broadcasting (FM and DVB-T). Conclusions: This study demonstrates that microenvironmental surveys using a portable device yields highly repeatable measurements, which allows monitoring time trends of RF-EMF exposure over an extended time period of several years and to compare exposure levels between different types of microenvironments.
机译:背景:环境中射频电磁场(RF-EMF)的时空分布是高度异质的。因此,尚不清楚如何以代表性和有效的方式监测环境中RF-EMF暴露水平的空间变异性和时间趋势。这项研究的目的是测试使用便携式设备在公共场所进行RF-EMF测量的监测协议。方法:使用安装在背包上的ExpoM-RF设备,我们通过走访了瑞士20个不同城市的51个不同的室外微环境,进行了RF-EMF测量:5个不同的市中心,5个中央住宅区,5个非中央住宅区,15个农村居民区,15个农村中心和6个工业区。在区域之间旅行时,收集了公共交通工具(公共汽车,火车,电车)的测量值。在2014年3月25日至7月11日之间进行了测量。为了评估一个微环境中的空间代表性,我们在每个微环境中测量了两条长约1 km的交叉路径。为了评估可重复性,在每个微环境中的两到四个月后,以相同的路径重复进行测量。结果:平均RF-EMF暴露量(87.5至5875 MHz之间的15个主要频段的总和)在工业区为0.53 V / m,在市中心为0.47 V / m,在中央居民区为0.32 V / m,为0.25 V / m非中心居住区,在农村中心和农村居住区为0.23 V / m,电车为0.69 V / m,火车为0.46 V / m,公共汽车为0.39 V / m。在户外场所,主要的曝光贡献来自于移动电话基站(相对于功率密度等级,所有户外区域的> 80%)。每个区域的第一次和第二次测量之间的时间相关性很高:总RF-EMF为0.89,所有五个移动电话下行链路频带均为0.90,所有五个上行链路频带合并为0.51,广播为0.79。在相同的微环境中,第一条路径的算术平均值与第二条路径的算术平均值之间的Spearman相关性分别为:总RF-EMF为0.75,所有五个手机下行链路频段总和为0.76,所有五个上行链路频段总和为0.55,广播(FM和DVB-T)。结论:这项研究表明,使用便携式设备进行的微环境调查可产生高度可重复的测量结果,从而可以监测RF-EMF暴露在延长的几年时间内的时间趋势,并比较不同类型的微环境之间的暴露水平。

著录项

  • 来源
    《Environmental research》 |2016年第10期|289-298|共10页
  • 作者单位

    Swiss Tropical and Public Health Institute, Department of Epidemiology and Public Health, Socinstrasse 57, Basel 4051, Switzerland,University of Basel, Petersplatz 1, Basel 4051, Switzerland;

    Swiss Tropical and Public Health Institute, Department of Epidemiology and Public Health, Socinstrasse 57, Basel 4051, Switzerland,University of Basel, Petersplatz 1, Basel 4051, Switzerland;

    Eoetvoe's Lorand University, Faculty of Science, Center of Environmental Studies, Pazmany Peter Setany 1/A, H-1117 Budapest, Hungary;

    Swiss Tropical and Public Health Institute, Department of Epidemiology and Public Health, Socinstrasse 57, Basel 4051, Switzerland,University of Basel, Petersplatz 1, Basel 4051, Switzerland;

    University of Basel, Petersplatz 1, Basel 4051, Switzerland,Swiss Tropical and Public Health Institute, Department of Epidemiology and Public Health, University of Basel, Socinstrasse 57, Basel 4051, Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radio-frequency electromagnetic fields (RF-EMF); Microenvironment; Exposure assessment; mobile phone handset; Mobile phone base station; Monitoring; Portable exposure meter (exposimeters);

    机译:射频电磁场(RF-EMF);微环境;暴露评估;手机;手机基站;监控;便携式曝光计(曝光计);

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