Radon Concentration Measurement in Ainkawa Region Using Solid State Nuclear Track Detector

Authors

  • Hanaa N. Azeez Department of Physics, College of Education, AL-Hamdaniya University, AL-Hamdaniya, Iraq.
  • Malik H. Kheder Department of Physics, College of Science, University of Baghdad, Baghdad, Iraq.
  • Muna Y. Slewa Department of Physics, College of Science, University of Baghdad, Baghdad, Iraq.
  • Sleeman Y. Sleeman Department of Physics, College of Science, University of Baghdad, Baghdad, Iraq.

Keywords:

Radon concentration, annual effective dose, Ainkawa region, CR-39, potential alpha energy

Abstract

Radon is the air contaminant radioactive gas which people exposed to, is a reason for lung damages and lung cancer. The areas that are subject to high radon levels are found by radon concentration measurement. The radon activity concentration, annual effective dose, and potential alpha energy concentration (PAEC), were measured in houses of Ainkawa region using CR-39 solid state nuclear track detectors SSNTDs with the sealed-can technique. In the present paper the estimated values for radon activity concentration are in the range 55.99-112.8 Bq/m3 with 84.30 Bq/m3 as a mean value, the range of annual effective dose are 1.411-2.872 mSv/y, with mean value 2.124 mSv/y, and the potential alpha energy concentration range are 6.0533-12.323 mWL with mean of 9.1133 mWL. The mean value of the radon concentration is below of 100 Bq/m3 the reference level of (WHO) World Health Organization, and well below of UK National Radiation Protection Board (NRPB) and European Commission Recommendation Level of 200 Bq/m3.

Downloads

Download data is not yet available.

Downloads

Published

2018-03-28

Issue

Section

Physics

How to Cite

Radon Concentration Measurement in Ainkawa Region Using Solid State Nuclear Track Detector. (2018). Iraqi Journal of Science, 59(1C), 482-488. https://ijs.uobaghdad.edu.iq/index.php/eijs/article/view/185

Similar Articles

1-10 of 1646

You may also start an advanced similarity search for this article.