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Balıkesir&Çanakkale Bölgesi, Edremit&Ayvacık Sınırlarındaki Kazdağı Köylerinde Havadaki Yıllık Gama Dozlarını Kullanarak Kanser Risk Hesabı

Year 2019, Issue: 15, 433 - 439, 31.03.2019
https://doi.org/10.31590/ejosat.512562

Abstract

Çalışmada
Edremit ve Ayvacık ilçeleri sınırlarında bulunan Kazdağı Köylerinde, öncelikle
havadaki gama doz hızlarının ölçülmesi hedeflenmiştir Turistik bölge olan
Kazdağında özellikle yaz sezonunda oldukça yoğun nüfus ağırlanmaktadır Bu
suretle sadece yöre insanını değil aynı zamanda ziyaretçilerini de
ilgilendirmektedir. Toplamda 75 farklı ölçüm noktasında gama doz hızları
alınmıştır. Ortalama doz hızı 162.04
nGyhr-1 ve yıllık doz ise 198.66 μSv hesaplanmıştır.
Bu değerler yardımıyla kanser risk hesabı yapılmış ve 6.95
x10−4
bulunmuştur. Her üç değer de, literatürde geçen diğer ulusal/uluslararası
değerlerle mukayese edilmiştir. Yine UNSCEAR değerleriyle de nisbeti
görülmektedir. Bu çalışma, ileride yapılacak benzer/bölgesel araştırmalara
referans olabilecektir. Yine muhtemel bir radyoaktif sızıntı sonrasında aynı
ölçüm noktalarında yeniden alınacak değerlerle mukayesesi, sızıntı boyutu
hakkında detaylı bilgi verebilecektir.

References

  • UNSCEAR., Report of the United Nations scientific committee on the effects of atomic radiation, sources, effects, and risks of ionizing radiation. United Nations Sales Publication, New York, 2008.
  • IDA villages/ Wikipedia.
  • IDA villages/ Google Earth.
  • http://www.pchemlabs.com/manuals/pdf/eberline-esp2-technical-manual.pdf
  • Drawing Software was used by CNAEM/TAEK.
  • ICRP., ICRP Publication 103 recommendations of the ICRP: annals of the ICRP volume 37/2-4. International Commission on Radiological Protection. Pergamon Pres, 2007.
  • G. Karahan, A. Bayülken, (2000), Assessment of gamma dose rates around Istanbul (Turkey), Journal of Environmental Radioactivity, 47, 213-221, doi: 10.1016/S0265-931X(99)00034-X
  • Ghiassi M., Mortazavi S. M., Cameron J. R., (2002). Very High Background Areas of Ramsar, Iran: Preliminary Biological Studies, Health Physics, 82(1), 87-93.
  • A. B., N. Y., E. Kam, G. Karahan and A.E. Osmanlioglu, (2007a), Assessment of environmental radioactivity for Sanliurfa region of southeastern Turkey, Radiat. Meas., 42, 1387-1391, https://doi.org/10.1016/j.radmeas.2007.05.052.
  • Değerlier, M.,KARAHAN G. (2007b). Ph.D. Thesis: Annual Effective Dose of Natural Environmental Radioactivity Measurements for Adana region. N.S. Institue- CU/ Adana.
  • E. Kam,et all., (2007c), Environmental radioactivity measurements in Kastamonu region of northearn Turkey, Applied Radiation and Isotopes, v.65, pp. 440-444, https://doi.org/10.1016/j.apradiso.2006.11.005.
  • E. Kam, et all., (2010), A study of background radioactivity level for Canakkale, Turkey. Environ Monit Assess, 168: 685–690, doi: 10.1007/s10661-009-1143-y.
  • E. Kapdan., et. all, (2011), Outdoor Radioactivity and Health Risks in Balıkesir, Northwestern Turkey, Radiation Protection Dosimetry, pp: 1-9, doi:10.1093/rpd/ncr038.
  • Lic´ınio MV, et al. (2013), A high spatial resolution outdoor dose rate map of the Rio de Janeiro city, Brasil, risk assessment and urbanization effects. J Environ Radioact 126, 32-9. doi: 10.1016/j.jenvrad.2013.07.012.
  • Yaşar Kobya, et all., (2015), Evaluation of Outdoor Gamma Dose Rate and Cancer Risk in Artvin Province, Turkey, Human and Ecological Risk Assessment: An International Journal, 21:8, 2077-2085, doi: 10.1080/10807039.2015.1017876.
  • M. A. Arnedo, et all., (2017), Mapping natural radioactivity of soils in the eastern Canary Islands, Spain, Journal of Environmental Radioactivity, 166, 242-258, doi: https://doi.org/10.1016/j.jenvrad.2016.07.010.
  • Enis Kapdan, et all., (2018), Outdoor radioactivity and health risk assessment for capital city Ankara, Turkey, Journal of Radioanalytical and Nuclear Chemistry, 318. 1033-1042, doi: 10.1007/s10967-018-6060-5.

Cancer Risk Determination for IDA villages by using Annual Gamma Doses in Air

Year 2019, Issue: 15, 433 - 439, 31.03.2019
https://doi.org/10.31590/ejosat.512562

Abstract

Main focus of this study is to measure outdoor gamma dose rates for IDA villages around Edremit and Ayvacık districts. This touristy location, is so closest to seismic zone and thermal water sources, has lodgings huge human population especially in summer season. It is important that not only local people but also for visitors, too. Total measurings on 75 different stations, were obtained and then calculated the annual dose. Average dose rate was calculated to 162.04 nGyhr-1 . Annual dose is 198.66 μSv. On the other hand, access life time cancer risk was calculated for studing area. It is equal to 6.95x10−4 . These values were compared with the World’s references (UNSCEAR) and assumed. . This study would be referenced for futher works, besides it will be usefull while comparing with the different studies for IDA which, will be completed in the future, for example after a radioactive pollution, such as a reactor leakage, weapon’s effect, etc., too.

References

  • UNSCEAR., Report of the United Nations scientific committee on the effects of atomic radiation, sources, effects, and risks of ionizing radiation. United Nations Sales Publication, New York, 2008.
  • IDA villages/ Wikipedia.
  • IDA villages/ Google Earth.
  • http://www.pchemlabs.com/manuals/pdf/eberline-esp2-technical-manual.pdf
  • Drawing Software was used by CNAEM/TAEK.
  • ICRP., ICRP Publication 103 recommendations of the ICRP: annals of the ICRP volume 37/2-4. International Commission on Radiological Protection. Pergamon Pres, 2007.
  • G. Karahan, A. Bayülken, (2000), Assessment of gamma dose rates around Istanbul (Turkey), Journal of Environmental Radioactivity, 47, 213-221, doi: 10.1016/S0265-931X(99)00034-X
  • Ghiassi M., Mortazavi S. M., Cameron J. R., (2002). Very High Background Areas of Ramsar, Iran: Preliminary Biological Studies, Health Physics, 82(1), 87-93.
  • A. B., N. Y., E. Kam, G. Karahan and A.E. Osmanlioglu, (2007a), Assessment of environmental radioactivity for Sanliurfa region of southeastern Turkey, Radiat. Meas., 42, 1387-1391, https://doi.org/10.1016/j.radmeas.2007.05.052.
  • Değerlier, M.,KARAHAN G. (2007b). Ph.D. Thesis: Annual Effective Dose of Natural Environmental Radioactivity Measurements for Adana region. N.S. Institue- CU/ Adana.
  • E. Kam,et all., (2007c), Environmental radioactivity measurements in Kastamonu region of northearn Turkey, Applied Radiation and Isotopes, v.65, pp. 440-444, https://doi.org/10.1016/j.apradiso.2006.11.005.
  • E. Kam, et all., (2010), A study of background radioactivity level for Canakkale, Turkey. Environ Monit Assess, 168: 685–690, doi: 10.1007/s10661-009-1143-y.
  • E. Kapdan., et. all, (2011), Outdoor Radioactivity and Health Risks in Balıkesir, Northwestern Turkey, Radiation Protection Dosimetry, pp: 1-9, doi:10.1093/rpd/ncr038.
  • Lic´ınio MV, et al. (2013), A high spatial resolution outdoor dose rate map of the Rio de Janeiro city, Brasil, risk assessment and urbanization effects. J Environ Radioact 126, 32-9. doi: 10.1016/j.jenvrad.2013.07.012.
  • Yaşar Kobya, et all., (2015), Evaluation of Outdoor Gamma Dose Rate and Cancer Risk in Artvin Province, Turkey, Human and Ecological Risk Assessment: An International Journal, 21:8, 2077-2085, doi: 10.1080/10807039.2015.1017876.
  • M. A. Arnedo, et all., (2017), Mapping natural radioactivity of soils in the eastern Canary Islands, Spain, Journal of Environmental Radioactivity, 166, 242-258, doi: https://doi.org/10.1016/j.jenvrad.2016.07.010.
  • Enis Kapdan, et all., (2018), Outdoor radioactivity and health risk assessment for capital city Ankara, Turkey, Journal of Radioanalytical and Nuclear Chemistry, 318. 1033-1042, doi: 10.1007/s10967-018-6060-5.
There are 17 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Articles
Authors

Muttalip Ergun Turgay 0000-0003-1708-8283

Publication Date March 31, 2019
Published in Issue Year 2019 Issue: 15

Cite

APA Turgay, M. E. (2019). Cancer Risk Determination for IDA villages by using Annual Gamma Doses in Air. Avrupa Bilim Ve Teknoloji Dergisi(15), 433-439. https://doi.org/10.31590/ejosat.512562