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土耳其变压器站和电气设备产生的磁场对职业的影响。

Occupational exposure to magnetic fields from transformer stations and electric enclosures in Turkey.

作者信息

Çam Semra Tepe, Fırlarer Arzu, Özden Semih, Canseven Ayşe G, Seyhan Nesrin

机构信息

Gazi University Faculty of Medicine Biophysics Department, 06500 Beşevler, Ankara, Turkey.

出版信息

Electromagn Biol Med. 2011 Jun;30(2):74-9. doi: 10.3109/15368378.2011.566772.

Abstract

We aimed to provide a systematic evaluation of magnetic field (MF) exposure of staff working in the offices located above or close to transformer stations (TS) and electric enclosures (EE). Occupational short-term "spot" measurements with Narda EFA-300 and isotropic magnetic field probe were carried out in two National Banks and one Industrial Company having more than 500 employees. Extremely low-frequency (ELF) MFs up to several tens of μT were measured in the mentioned working environments. 25% of the measured MFs were found less than 0.3 μT, the background exposure level that staff receive at home, 75% were above 0.3 μT with the highest value of 6.8 μT. The mean and median personal exposures were calculated to be 1.19 μT and 0.56 μT, respectively. Most of the staff (83%) is under risk based on epidemiological studies that reported a statistically significant association between risk of leukemia and averaged magnetic fields of 0.2 μT or over. Results showed that risk evaluation should be considered to minimize the possibility of the workers being harmed due to exposure to work-related electromagnetic sources.

摘要

我们旨在对在位于变电站(TS)或电气设备(EE)上方或附近的办公室工作的员工的磁场(MF)暴露情况进行系统评估。使用Narda EFA - 300和各向同性磁场探头对两家拥有500多名员工的国家银行和一家工业公司进行了职业短期“现场”测量。在上述工作环境中测量到了高达几十微特斯拉的极低频(ELF)磁场。发现25%的测量磁场低于0.3微特斯拉,即员工在家中所接受的背景暴露水平,75%的测量磁场高于0.3微特斯拉,最高值为6.8微特斯拉。计算得出个人暴露的平均值和中位数分别为1.19微特斯拉和0.56微特斯拉。根据流行病学研究,大多数员工(83%)处于风险之中,这些研究报告称白血病风险与平均0.2微特斯拉及以上的磁场之间存在统计学上的显著关联。结果表明,应考虑进行风险评估,以尽量减少工人因接触与工作相关的电磁源而受到伤害的可能性。

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