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Electrical stimulation vs thermal effects in a complex electromagnetic environment
- Source :
- Science of The Total Environment. 407:4717-4722
- Publication Year :
- 2009
- Publisher :
- Elsevier BV, 2009.
-
Abstract
- Studies linking exposure to low levels of radiofrequencies with adverse health effects, notwithstanding their present apparent inconsistency, have contributed to a steady improvement in the quality of evaluating that exposure. In complex electromagnetic environments, with a multitude of emissions of different frequencies acting simultaneously, knowledge of the spectral content is fundamental to evaluating human exposure to non-ionizing radiation. In the present work, we quantify the most significant spectral components in the frequency band 0.5–2200 MHz in an urban area. The measurements were made with a spectrum analyzer and monopole, biconical, and log-periodic antennas. Power density levels were calculated separately for the medium wave, short wave, and frequency modulation radio broadcasting bands, and for the television and GSM , DCS , and UMTS mobile telephony bands. The measured levels were compared with the ICNIRP reference levels for exposure to multiple frequency sources for thermal effects and electrical stimulation. The results showed the criterion limiting exposure on the basis of preventing electrical stimulation of peripheral nerves and muscles to be stricter (exposure quotient 24.7 10 − 4 ) than that based on thermal considerations (exposure quotient 0.16 10 − 4 ). The bands that contribute most to the latter are short wave, with 46.2%, and mobile telephony with 32.6% of the total exposure. In a complex electromagnetic environment, knowledge of the radiofrequency spectrum is essential in order to quantify the contribution of each type of emission to the public's exposure. It is also necessary to evaluate the electrical effects as well as the thermal effects because the criterion to limit exposure on the basis of the effect of the electrical stimulation of tissues is stricter than that based on thermal effects.
- Subjects :
- Electromagnetic field
Spectrum analyzer
Environmental Engineering
Materials science
Radio Waves
Electromagnetic environment
Frequency band
Acoustics
Electromagnetic Fields
Radiation Monitoring
Humans
Environmental Chemistry
Waste Management and Disposal
business.industry
Temperature
Urban Health
Electrical engineering
Environmental Exposure
Models, Theoretical
Pollution
Non-ionizing radiation
Electric Stimulation
Spain
business
Frequency modulation
UMTS frequency bands
Radio wave
Subjects
Details
- ISSN :
- 00489697
- Volume :
- 407
- Database :
- OpenAIRE
- Journal :
- Science of The Total Environment
- Accession number :
- edsair.doi.dedup.....9b61771c3e524fc60c373c3ef5dff604