Erzincan Bölgesindeki Su Kaynaklarının Radon İçeriğindeki Mevsimsel Değişimler
Yıl 2025,
Cilt: 51 Sayı: 1, 1 - 6, 01.04.2025
Bekir Emin Erdoğan
Mehmet Erdoğan
Öz
Bu çalışmada, Erzincan bölgesindeki su kaynaklarından alınan örneklerin radon aktivitesi yaz ve kış mevsimlerinde belirlenmiş ve mevsimsel değişimi araştırılmıştır. Ölçümler AlphaGUARD radon detektörü ile gerçekleştirilmiştir. Sonuçlar mevsimsel olarak önemli bir değişimin olmadığını göstermekle birlikte yaz mevsiminde nispeten daha düşük radon değerleri belirlenmiştir. Belirlenen kaynakların radon aktiviteleri, içme suları için USEPA (United State Environmental Protection Agency) tarafından tavsiye edilen 11.1 Bq.l-1 üst sınır değerinin oldukça altında bulunmuştur.
Destekleyen Kurum
Türkiye Bilimsel ve Teknolojik Araştırma Kurumu (TÜBİTAK) tarafından 2209-A Üniversite Öğrencileri Araştırma Projeleri Destekleme Programı
Proje Numarası
1919B012217218
Kaynakça
- Boz, D. ve Yilmaz, A., (2020), Erzincan Ovası ve Dolayının Çevre Jeolojisi ve Planlanmasına Bir Yaklaşım, Jeoloji Mühendisliği Dergisi, 44 (2), 223-252.
- Emre, Ö., T.Y., D., Kondo, H., Olgun, Ş., Özalp, S. ve Elmacı, H., (2012), 1/250. 000 Ölçekli Türkiye diri fay haritası serisi, Erzincan (NJ 37-3) paftası, 1/250000, Ankara: Maden Tetkik ve Arama Genel Müdürlüğü (MTA), Jeoloji Etütleri Dairesi.
- Kochowska, E., Mazur, J., Kozak, K. ve Janik, M., (2004), Radon in well waters in the Krakow area, Isotopes in Environmental and Health Studies, 40 (3), 207-212.
- Manisa, K., Erdogan, M., Zedef, V., Bircan, H. ve Bicer, A., (2022), Variations of (222) Rn concentrations over active fault system in Simav, Kutahya, Western Turkey: Possible causes for soil-gas (222) Rn anomalies, Appl Radiat Isot, 190, 110484.
- Sandıkcıoğlu Gümüş, A., (2024), Investigation of the relationship between the decline in well waters radon anomalies and the earthquake magnitude (Mw), Journal of Radioanalytical and Nuclear Chemistry, 333 (5), 2307-2320.
- Schubert, M., Buerkin, W., Peña, P., Lopez, A. E. ve Balcázar, M., (2006), On-site determination of the radon concentration in water samples: Methodical background and results from laboratory studies and a field-scale test, Radiation Measurements, 41 (4), 492-497.
- Schubert, M., Paschke, A., Lieberman, E. ve Burnett, W. C., (2012), Air-Water Partitioning of Rn and its Dependence on Water Temperature and Salinity, Environmental Science & Technology, 46 (7), 3905-3911.
- Ting, C. Y., Walia, V., Li, Y. S., Lin, S. J., Lee, P. L., Tsai, T. L., Kumar, A. ve Lin, C. C., (2022), Quantification of the dependence of the emanation of radon from water on the pH and temperature of water, Radiation Physics and Chemistry, 200.
- UNSCEAR, (2000), Sources, Effects, and Risks of Ionizing Radiation, New York.
- USEPA, (1991), National Primary Drinking Water Regulations, Radionuclides, Proposed Rules, 33126.
- Villalba, L., Sujo, L. C., Cabrera, M. E. M., Jiménez, A. C., Villalobos, M. R., Mendoza, C. J. D., Tenorio, L. A. J., Rangel, I. D. ve Peraza, E. F. H., (2005), Radon concentrations in ground and drinking water in the state of Chihuahua, Mexico, Journal of Environmental Radioactivity, 80 (2), 139-151.
- WHO, (2008), Guidelines for drinking water quality, Geneva, 207.
- Woith, H., (2015), Radon earthquake precursor: A short review, European Physical Journal-Special Topics, 224 (4), 611-627.
Seasonal Changes in the Radon Content of Water Resources in the Erzincan Region
Yıl 2025,
Cilt: 51 Sayı: 1, 1 - 6, 01.04.2025
Bekir Emin Erdoğan
Mehmet Erdoğan
Öz
In this study, radon activity of samples taken from water resources in Erzincan region was determined in summer and winter seasons and seasonal changes were investigated. Measurements were carried out with AlphaGUARD radon detector. Although the results showed that there was no significant seasonal change, relatively lower radon values were determined in summer season. Radon activities of the determined sources were found to be well below the upper limit value of 11.1 Bq.l-1 recommended by USEPA (United State Environmental Protection Agency) for drinking water.
Proje Numarası
1919B012217218
Kaynakça
- Boz, D. ve Yilmaz, A., (2020), Erzincan Ovası ve Dolayının Çevre Jeolojisi ve Planlanmasına Bir Yaklaşım, Jeoloji Mühendisliği Dergisi, 44 (2), 223-252.
- Emre, Ö., T.Y., D., Kondo, H., Olgun, Ş., Özalp, S. ve Elmacı, H., (2012), 1/250. 000 Ölçekli Türkiye diri fay haritası serisi, Erzincan (NJ 37-3) paftası, 1/250000, Ankara: Maden Tetkik ve Arama Genel Müdürlüğü (MTA), Jeoloji Etütleri Dairesi.
- Kochowska, E., Mazur, J., Kozak, K. ve Janik, M., (2004), Radon in well waters in the Krakow area, Isotopes in Environmental and Health Studies, 40 (3), 207-212.
- Manisa, K., Erdogan, M., Zedef, V., Bircan, H. ve Bicer, A., (2022), Variations of (222) Rn concentrations over active fault system in Simav, Kutahya, Western Turkey: Possible causes for soil-gas (222) Rn anomalies, Appl Radiat Isot, 190, 110484.
- Sandıkcıoğlu Gümüş, A., (2024), Investigation of the relationship between the decline in well waters radon anomalies and the earthquake magnitude (Mw), Journal of Radioanalytical and Nuclear Chemistry, 333 (5), 2307-2320.
- Schubert, M., Buerkin, W., Peña, P., Lopez, A. E. ve Balcázar, M., (2006), On-site determination of the radon concentration in water samples: Methodical background and results from laboratory studies and a field-scale test, Radiation Measurements, 41 (4), 492-497.
- Schubert, M., Paschke, A., Lieberman, E. ve Burnett, W. C., (2012), Air-Water Partitioning of Rn and its Dependence on Water Temperature and Salinity, Environmental Science & Technology, 46 (7), 3905-3911.
- Ting, C. Y., Walia, V., Li, Y. S., Lin, S. J., Lee, P. L., Tsai, T. L., Kumar, A. ve Lin, C. C., (2022), Quantification of the dependence of the emanation of radon from water on the pH and temperature of water, Radiation Physics and Chemistry, 200.
- UNSCEAR, (2000), Sources, Effects, and Risks of Ionizing Radiation, New York.
- USEPA, (1991), National Primary Drinking Water Regulations, Radionuclides, Proposed Rules, 33126.
- Villalba, L., Sujo, L. C., Cabrera, M. E. M., Jiménez, A. C., Villalobos, M. R., Mendoza, C. J. D., Tenorio, L. A. J., Rangel, I. D. ve Peraza, E. F. H., (2005), Radon concentrations in ground and drinking water in the state of Chihuahua, Mexico, Journal of Environmental Radioactivity, 80 (2), 139-151.
- WHO, (2008), Guidelines for drinking water quality, Geneva, 207.
- Woith, H., (2015), Radon earthquake precursor: A short review, European Physical Journal-Special Topics, 224 (4), 611-627.