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瑞典斯德哥尔摩市的高环境射频辐射。

High ambient radiofrequency radiation in Stockholm city, Sweden.

作者信息

Carlberg Michael, Hedendahl Lena, Koppel Tarmo, Hardell Lennart

机构信息

Department of Oncology, Faculty of Medicine and Health, Örebro University, SE 701 82 Örebro, Sweden.

The Environment and Cancer Research Foundation, SE 702 17 Örebro, Sweden.

出版信息

Oncol Lett. 2019 Feb;17(2):1777-1783. doi: 10.3892/ol.2018.9789. Epub 2018 Dec 3.

Abstract

We measured the radiofrequency (RF) radiation at central parts in Stockholm, Sweden in March and April 2017. The same measurement round tour was used each time. We used EME Spy 200 for the measurements as in our previous studies in Stockholm. The results were based on 11,482 entries, corresponding to more than 12 h measurements. The total mean level was 5,494 µW/m (median 3,346; range 36.6-205,155). The major contributions were down links from LTE 800 (4G), GSM + UMTS 900 (3G), GSM 1800 (2G), UMTS 2100 (3G) and LTE 2600 (4G). Regarding different places, the highest RF radiation was measured at the Hay Market with a mean level of 10,728 µW/m (median 8,578; range 335-68,815). This is a square used for shopping, and both retailers and visitors may spend considerable time at this place. Also, the Sergel Plaza had high radiation with a mean of 7,768 µW/m. All measurements exceeded the target level of 30-60 µW/m based on non-thermal (no heating) effects, according to the BioInitiative Report. Based on short-term thermal effects, The International Commission on Non-Ionizing Radiation Protection established guideline 2 of 10 W/m (2,000,000-10,000,000 µW/m) depending on frequency in 1998, and has not changed it despite solid evidence of non-thermal biological effects at substantially lower exposure levels. These environmental RF radiation levels are expected to increase with the introduction of 5G for wireless communication.

摘要

2017年3月和4月,我们在瑞典斯德哥尔摩的市中心区域测量了射频(RF)辐射。每次测量都采用相同的测量路线。与我们之前在斯德哥尔摩进行的研究一样,此次测量使用了EME Spy 200。测量结果基于来自11482条记录,相当于超过12小时的测量时长。总平均水平为5494微瓦/平方米(中位数为3346;范围为36.6 - 205155)。主要贡献来自长期演进技术(LTE)800(4G)、全球移动通信系统(GSM)+通用移动通信系统(UMTS)900(3G)、GSM 1800(2G)、UMTS 2100(3G)和LTE 2600(4G)的下行链路。在不同地点方面,在干草市场测得的射频辐射最高,平均水平为10728微瓦/平方米(中位数为8578;范围为335 - 68815)。这是一个用于购物的广场,零售商和游客可能都会在这个地方花费大量时间。此外,塞尔格尔广场的辐射也很高,平均为7768微瓦/平方米。根据《生物倡议报告》,基于非热(无加热)效应,所有测量结果都超过了30 - 60微瓦/平方米的目标水平。基于短期热效应,国际非电离辐射防护委员会于1998年根据频率制定了10瓦/平方米(2000000 - 10000000微瓦/平方米)的导则2,并且尽管有确凿证据表明在低得多的暴露水平下存在非热生物效应,但该导则并未改变。随着用于无线通信的5G技术的引入,预计这些环境射频辐射水平将会增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5b2/6341832/f0a2394294d8/ol-17-02-1777-g00.jpg

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