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Controlled Laboratory Experiments on Radon Diffusion Coefficient

Year 2019, Volume: 23 Issue: 3, 308 - 312, 01.06.2019
https://doi.org/10.16984/saufenbilder.452946

Abstract

Radon which occurs in
uranium decay series is a noble gas and it moves from the deeper layers of the
earth crust to the atmosphere. Formation of the radon gas in the Earth's crust
and its migration to atmosphere are quite complex process because of too many
factors. In this process, both the advection and diffusion are effective
mechanisms on radon transport. But mostly the dominant mechanism is diffusion.
In this study, radon diffusion of soils taken from Küçük Menderes Basin was
investigated by controlled laboratory experiments and the radon diffusion
coefficient of these soils were calculated

References

  • Nazaroff, W.W. and Nero, A.V., 1988, Radon and its Decay Products in Indoor Air, Edited by William W. Nazaroff and Anthony V. Nero, Wiley-Interscience Publications.
  • Misdaq, M.A. and Essaouif, Z., "Study of the weekly irrigation cycle of a cultivated field in a semi-arid area (Marrakech region, Morocco) by using CR-39 and LR-115 II track detectors and radon as a natural tracer". Radiation Measurement, 42, 431-440, 2007.
  • Sundal, A.V., Valen, V., Sondal, O., and Strand, T., “The influence of meteorological parameters on soil radon levels in permeable glacial sediments”. The Science of Total Environment, 389, 418-428, 2008.
  • İçhedef, M., Saç, M.M., Camgöz, B., Bolca, M., Harmanşah, C., “Soil gas radon concentrations measurements interms of great soil groups”. Journal of Environmental Radioactivity, 126,165–171, 2013.
  • Günay, O., Saç, M.M:, İçhedef, M., Taşköprü, C., “Soil gas radon concentrations along the Ganos Fault (GF)”. Arabian Journal of Geosciences, 11:213, 2018.
  • Tabar, E., Yakut, H., Kuş, E., “Measurement of the radon exhalation rate and effective radium concentration in soil samples of southern Sakarya, Turkey”. Indoor and Built Environment, 27, 2, 278-288, 2016.
  • Reddy, D.V., Nagabhushanam, P., Sukhija, B.S., Rajender Reddy, G., “Continuous radon monitoring in soil gas towards earthquake precursory studies in basaltic region”. Radiation Measurements, 45, 935-942, 2010.
  • Moreno, V, Bach, J., Baixeras, C., Font, L.I.., “Radon levels in groundwaters and natural radioactivity in soils of the volcanic region of La Garrotxa, Spain”. Journal of Environmental Radioactivity, 128, 1-8, 2014.
  • Imme, G., La Delfa, S., Lo Nigro, S., Morelli, D., Patamne, G., “Soil radon concentration and volcanic activity of Mt. Etna before and after the 2002 eruption”. Radiation Measurements, 41, 241–245, 2006.
  • Prasad, G:, Ishikawa, T., Hosoda, M., Sorimachi, A., Janik, M., Sahoo, S.K., Tokonami, S., Uchida, S., “Estimation of radon diffusion coefficients in soil using an updated experimental system”. Review of Scientific Instruments, 83, 093503, 2012.
  • Somogyi, G., Hafez, A., Hunyadi, I., Toth-Szilagyi, M., “Measurement of exhalation and difusion parameters of radon in solids by plastic track detectors”, Nuclear Tracks Radiataion Measurement, 12, 701–704, 1986.
  • Abumurad, K.M., Atallah, M., Kullab, M.K., Ismall, A., “Determination of radon soil concentration levels in the governorate of Irbıd, Jordan”, Radiation Measurements, 28 (1-6), 585-588, 1997.
  • Savovic, S., Djordjevich, A., Tse, P.W., Krstic, D., “Explicit finite difference solution of the diffusion equation describing the flow of radon through soil”, Applied Radiation and Isotopes, 69, 237-240, 2011.
  • Cosma, C., Dancea, F., Jurcut, T., Ristoiu, D., “Determination of 222Rn emanation fraction and diffusion coeffcient in concrete using accumulation chambers and the infuence of humidity and radium distribution”, Applied Radiation and Isotopes, 54, 467-473, 2001.
  • Singh, S., Kumar, J., Singh, B., Singh, J., “Radon difusion studies in some building materials using solid state nuclear track detectors”. Radiation Measurements, 30, 461-464, 1999.
  • Narula, A.K., Saini, R.S., Goyal, S.K., Chauan, R.P., Chakarvanti, S.K., “Indoor radiation levels enhanced by underground radon diffusion”, Asian Journal of Chemistry, 21, 10, 275-278, 2009.
  • Singh, B., Singh, S., Virk, H.S., “Radon diffusion studies in air, gravel, sand, soil and and emanation of radon in the soil water”. Nuclear Tracks Radiataion Measurement, 22, 1-4, 455-458, 1993.
  • Cherouati, D.E., Djeffal, S., Durrani, S.A. "Calibration factor for LR-115 detectors used for the measurement of alpha activity from radon". Nuclear Tracks Radiation Measurement, 15, 583-586, 1988.
  • Ryzhakova, N.K., “A new method for estimating the coefficients of diffusion”. Journal of Environmental Radioactivity, 135, 63-66, 2014.
Year 2019, Volume: 23 Issue: 3, 308 - 312, 01.06.2019
https://doi.org/10.16984/saufenbilder.452946

Abstract

References

  • Nazaroff, W.W. and Nero, A.V., 1988, Radon and its Decay Products in Indoor Air, Edited by William W. Nazaroff and Anthony V. Nero, Wiley-Interscience Publications.
  • Misdaq, M.A. and Essaouif, Z., "Study of the weekly irrigation cycle of a cultivated field in a semi-arid area (Marrakech region, Morocco) by using CR-39 and LR-115 II track detectors and radon as a natural tracer". Radiation Measurement, 42, 431-440, 2007.
  • Sundal, A.V., Valen, V., Sondal, O., and Strand, T., “The influence of meteorological parameters on soil radon levels in permeable glacial sediments”. The Science of Total Environment, 389, 418-428, 2008.
  • İçhedef, M., Saç, M.M., Camgöz, B., Bolca, M., Harmanşah, C., “Soil gas radon concentrations measurements interms of great soil groups”. Journal of Environmental Radioactivity, 126,165–171, 2013.
  • Günay, O., Saç, M.M:, İçhedef, M., Taşköprü, C., “Soil gas radon concentrations along the Ganos Fault (GF)”. Arabian Journal of Geosciences, 11:213, 2018.
  • Tabar, E., Yakut, H., Kuş, E., “Measurement of the radon exhalation rate and effective radium concentration in soil samples of southern Sakarya, Turkey”. Indoor and Built Environment, 27, 2, 278-288, 2016.
  • Reddy, D.V., Nagabhushanam, P., Sukhija, B.S., Rajender Reddy, G., “Continuous radon monitoring in soil gas towards earthquake precursory studies in basaltic region”. Radiation Measurements, 45, 935-942, 2010.
  • Moreno, V, Bach, J., Baixeras, C., Font, L.I.., “Radon levels in groundwaters and natural radioactivity in soils of the volcanic region of La Garrotxa, Spain”. Journal of Environmental Radioactivity, 128, 1-8, 2014.
  • Imme, G., La Delfa, S., Lo Nigro, S., Morelli, D., Patamne, G., “Soil radon concentration and volcanic activity of Mt. Etna before and after the 2002 eruption”. Radiation Measurements, 41, 241–245, 2006.
  • Prasad, G:, Ishikawa, T., Hosoda, M., Sorimachi, A., Janik, M., Sahoo, S.K., Tokonami, S., Uchida, S., “Estimation of radon diffusion coefficients in soil using an updated experimental system”. Review of Scientific Instruments, 83, 093503, 2012.
  • Somogyi, G., Hafez, A., Hunyadi, I., Toth-Szilagyi, M., “Measurement of exhalation and difusion parameters of radon in solids by plastic track detectors”, Nuclear Tracks Radiataion Measurement, 12, 701–704, 1986.
  • Abumurad, K.M., Atallah, M., Kullab, M.K., Ismall, A., “Determination of radon soil concentration levels in the governorate of Irbıd, Jordan”, Radiation Measurements, 28 (1-6), 585-588, 1997.
  • Savovic, S., Djordjevich, A., Tse, P.W., Krstic, D., “Explicit finite difference solution of the diffusion equation describing the flow of radon through soil”, Applied Radiation and Isotopes, 69, 237-240, 2011.
  • Cosma, C., Dancea, F., Jurcut, T., Ristoiu, D., “Determination of 222Rn emanation fraction and diffusion coeffcient in concrete using accumulation chambers and the infuence of humidity and radium distribution”, Applied Radiation and Isotopes, 54, 467-473, 2001.
  • Singh, S., Kumar, J., Singh, B., Singh, J., “Radon difusion studies in some building materials using solid state nuclear track detectors”. Radiation Measurements, 30, 461-464, 1999.
  • Narula, A.K., Saini, R.S., Goyal, S.K., Chauan, R.P., Chakarvanti, S.K., “Indoor radiation levels enhanced by underground radon diffusion”, Asian Journal of Chemistry, 21, 10, 275-278, 2009.
  • Singh, B., Singh, S., Virk, H.S., “Radon diffusion studies in air, gravel, sand, soil and and emanation of radon in the soil water”. Nuclear Tracks Radiataion Measurement, 22, 1-4, 455-458, 1993.
  • Cherouati, D.E., Djeffal, S., Durrani, S.A. "Calibration factor for LR-115 detectors used for the measurement of alpha activity from radon". Nuclear Tracks Radiation Measurement, 15, 583-586, 1988.
  • Ryzhakova, N.K., “A new method for estimating the coefficients of diffusion”. Journal of Environmental Radioactivity, 135, 63-66, 2014.
There are 19 citations in total.

Details

Primary Language English
Subjects Metrology, Applied and Industrial Physics
Journal Section Research Articles
Authors

Mutlu İçhedef 0000-0002-8590-1187

Publication Date June 1, 2019
Submission Date August 13, 2018
Acceptance Date September 25, 2018
Published in Issue Year 2019 Volume: 23 Issue: 3

Cite

APA İçhedef, M. (2019). Controlled Laboratory Experiments on Radon Diffusion Coefficient. Sakarya University Journal of Science, 23(3), 308-312. https://doi.org/10.16984/saufenbilder.452946
AMA İçhedef M. Controlled Laboratory Experiments on Radon Diffusion Coefficient. SAUJS. June 2019;23(3):308-312. doi:10.16984/saufenbilder.452946
Chicago İçhedef, Mutlu. “Controlled Laboratory Experiments on Radon Diffusion Coefficient”. Sakarya University Journal of Science 23, no. 3 (June 2019): 308-12. https://doi.org/10.16984/saufenbilder.452946.
EndNote İçhedef M (June 1, 2019) Controlled Laboratory Experiments on Radon Diffusion Coefficient. Sakarya University Journal of Science 23 3 308–312.
IEEE M. İçhedef, “Controlled Laboratory Experiments on Radon Diffusion Coefficient”, SAUJS, vol. 23, no. 3, pp. 308–312, 2019, doi: 10.16984/saufenbilder.452946.
ISNAD İçhedef, Mutlu. “Controlled Laboratory Experiments on Radon Diffusion Coefficient”. Sakarya University Journal of Science 23/3 (June 2019), 308-312. https://doi.org/10.16984/saufenbilder.452946.
JAMA İçhedef M. Controlled Laboratory Experiments on Radon Diffusion Coefficient. SAUJS. 2019;23:308–312.
MLA İçhedef, Mutlu. “Controlled Laboratory Experiments on Radon Diffusion Coefficient”. Sakarya University Journal of Science, vol. 23, no. 3, 2019, pp. 308-12, doi:10.16984/saufenbilder.452946.
Vancouver İçhedef M. Controlled Laboratory Experiments on Radon Diffusion Coefficient. SAUJS. 2019;23(3):308-12.