• Title of article

    Spatial distribution and lifetime cancer risk due to gamma radioactivity in Yelagiri Hills, Tamilnadu, India

  • Author/Authors

    Chandrasekaran, A. Global Institute of Engineering Technology, India , Ravisankar, R. Government Arts College - Department of Physics, India , Senthilkumar, G. University College of Engineering Arni - Department of Physics, India , Thillaivelavan, K. Periayar Arts College - Department of Physics, India , Dhinakaran, B. Government Arts College - Department of Physics, India , Vijayagopal, P. Indira Gandhi Centre for Atomic Research - Radiation Safety Section, India , Bramha, S.N. Indira Gandhi Centre for Atomic Research - Radiation Safety Section, India , Venkatraman, B. Indira Gandhi Centre for Atomic Research - Radiation Safety Section, India

  • From page
    38
  • To page
    48
  • Abstract
    The spatial distribution of natural radioactivity due to uranium, thorium and potassium was investigated in soils from the undisturbed areas in Yelagiri Hills, Tamilnadu, India by Isodose map. The radiological hazards due to natural radionuclides content such as representative level index (RLI), activity utilization index (AUI), excess lifetime cancer risk (ELCR) and internal radiation hazards (Hin) of the soil samples in this area were calculated. The calculated radiological hazard parameters are compared with different countries of the world. The calculated range of ELCR is 0.326 x10^-3 to 1.067x 10^-3 with an average of 0.700x10^-3 for soils. This average value of ELCR is more twice than the world average (0.290x10^-3). A correlation analysis was made between measured dose rate and individual radionuclides, in order to delineate the contribution of the respective nuclides toward the dose rate. The U/Th concentration ratio in surface soil samples ranged from 0.05 to 1.72 with an average of 0.43 which is more higher (80%) than the world average of 0.26. The application of cluster analysis (CA) and principal component analysis (PCA), coupled with Pearson correlation coefficient analysis, were utilized to analyze the data, identify and clarify between the radiological parameters to know the existing relations. The CA and PCA results showed that the former method yielded three distinctive groups of the soil variables whereas the latter one yielded the number of variables into two factors with 94.47% variance explanation.
  • Keywords
    Soil , Gamma ray spectrometry , Excess lifetime cancer risk , Statistical analysis , Spatial distribution
  • Journal title
    Egyptian Journal Of Basic an‎d Applied Sciences
  • Journal title
    Egyptian Journal Of Basic an‎d Applied Sciences
  • Record number

    2596815