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Estimation of Exhalation Rates of Radon and Thoron in the Soil Samples Collected from Gurugram, Haryana, India


Affiliations
1 Department of Physics, Gurugram University, Gurugram, Haryana 122 003, India
2 Department of Physics, Aggarwal College Ballabgarh, Faridabad, Haryana 121 004, India
 

Natural radioactivity is the term used to describe radioactivity that persists in the soil, rocks, and water due to fundamental radionuclides such as uranium, thorium, potassium, etc. As a result, radiation affects everyone on the planet. Researchers worldwide find this topic particularly interesting due to the hazardous effects of radionuclides on human health. A systematic survey employing trustworthy methodological approaches is necessary to objectively assess these radionuclides in the environment. In the present paper, ZnS:Ag scintillator-based SMART RnDuo (AQTEK System, India) is used to measure exhalation rates of isotopes 222Rn and 220Rn (radon and thoron) of soil samples. Forty soil samples were studied. For the study of 222Rn, monitoring of the mass exhalation (Rm) was conducted. In the case of 220Rn, monitoring of surface exhalation (Rs) was studied. The radon mass exhalation rate is found in the range of 14±1 to 55±5 mBqkg−1h−1 with an average of 34±10 mBqkg−1h−1 and thoron surface exhalation rate in the range of 2200±215 to 7560±420 Bqm-2h-1 with an average of 4280±960 Bqm-2h−1. Thus, elevated thoron level is observed in most of the samples. Results are compared with the world’s average values.

Keywords

Alpha scintillometry; Exhalation rate; Soil samples; Radon; Thoron.
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  • UNSCEAR: United Nations Scientific Committee on the Effects of Atomic Radiation, UN Publications, New York (2000).
  • IAEA, Measurement and Calculation of Radon Releases from NORM Residues (2013).
  • Jamir S, Sahoo B K, Mishra R & Sinha D, Groundwater Sust Develop, 20 (2023) 100874.
  • Singh B, Kant K, Garg M & Sahoo B K, J Radioanal Nucl Chem, 326 (2020) 831.
  • Chauhan R P & Chakarvarti S K, Indian J Pure Appl Phys, 40 (2002) 670.
  • Kumari R, Kant K & Garg M, ISST J Appl Phys, 7 (2016) 16.
  • CGWB, Department of Water Resources Ground Water Year Book of Haryana State (2018-2019), North Western Region Chandigarh (2019).
  • CGWB, Ground Water Information Booklet of District Gurugram, Haryana, Government of India, North Western region, Chandigarh, (2015).
  • Sapra B K, Sahoo B K, Mishra R, Kanse S D, Rout R P, Aggarwal T K, Prajith R, Gaware J J, Jalaluddin S & Kumbhar D S, BARC Newsletter, Mumbai, 51 (2010).
  • Sahoo B K, Nathwani D, Eappen K P, Ramchandarn T V, Gaware J J & Mayya Y S, Radiat Meas, 42 (2007) 1422.
  • Kanse S D, Sahoo B K, Spara B K, Gaware J J & Mayya Y S, Radiat Meas, 48 (2013) 82.
  • Singh B, Kant K & Garg M, Int J Environ Anal Chem, 1-14 (2021).
  • Rani S, Kansal S, Singla A K & Mehra R, J Radioanal Nucl Chem, 331 (2022) 1889.
  • UNSCEAR, Report to the general assembly with scientific annexes., New York, (2000).
  • Mehta V, Chauhan R P & Mudahar G S, Environ Earth Sci, 74 (2015) 4145.
  • Kaur M, Kumar A, Mehra R, Mishra R & Bajwa B S, Arab J Geosci,14 (2021) 808.
  • Karthik Kumar M B, Nagaish N & Mathews G, Radiat Prot Environ, 41 (2018) 8.
  • Sundar SB, Chitra N, Vijaylakshmi I, et al., Radiat Prot Dosim, (2015). 19 Kaur K, Kumar A, Mehra R, et al., Hum Ecol Risk Assess Int J, (2018).
  • Kumar A, Vij R, Sharma S, et al., Acta Geophys, (2018).
  • Singh P, Bajwa B S, et al., J Radioanal Nucl Chem, 311 (2017) 253.
  • Kaur M, Kumar A, Kaur S, et al., Radiat Prot Environ, 41 (2018) 210.
  • Singla A K, Kansal S, Rani S, Nazir S & Mehra R, Indian J Pure Appl Phys, 61 (2023) 435.

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  • Estimation of Exhalation Rates of Radon and Thoron in the Soil Samples Collected from Gurugram, Haryana, India

Abstract Views: 27  |  PDF Views: 22

Authors

Bhupender Singh
Department of Physics, Gurugram University, Gurugram, Haryana 122 003, India
Krishan Kant
Department of Physics, Aggarwal College Ballabgarh, Faridabad, Haryana 121 004, India

Abstract


Natural radioactivity is the term used to describe radioactivity that persists in the soil, rocks, and water due to fundamental radionuclides such as uranium, thorium, potassium, etc. As a result, radiation affects everyone on the planet. Researchers worldwide find this topic particularly interesting due to the hazardous effects of radionuclides on human health. A systematic survey employing trustworthy methodological approaches is necessary to objectively assess these radionuclides in the environment. In the present paper, ZnS:Ag scintillator-based SMART RnDuo (AQTEK System, India) is used to measure exhalation rates of isotopes 222Rn and 220Rn (radon and thoron) of soil samples. Forty soil samples were studied. For the study of 222Rn, monitoring of the mass exhalation (Rm) was conducted. In the case of 220Rn, monitoring of surface exhalation (Rs) was studied. The radon mass exhalation rate is found in the range of 14±1 to 55±5 mBqkg−1h−1 with an average of 34±10 mBqkg−1h−1 and thoron surface exhalation rate in the range of 2200±215 to 7560±420 Bqm-2h-1 with an average of 4280±960 Bqm-2h−1. Thus, elevated thoron level is observed in most of the samples. Results are compared with the world’s average values.

Keywords


Alpha scintillometry; Exhalation rate; Soil samples; Radon; Thoron.

References