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Transfer of radioactivity from soil to vegetation in Rechna Doab,Pakistan
Authors:Abdul Jabbar  Muhammad Tufail  Waheed Arshed  Arshed Salem Bhatti  Syed Salman Ahmad  Perveen Akhter
Institution:1. Department of Physics , COMSATS Institute of Information Technology , Islamabad, Pakistan;2. Health Physics Division , Pakistan Institute of Nuclear Science and Technology , Nilore, Islamabad, Pakistan mand_tegha@yahoo.com;4. Pakistan Institute of Engineering and Applied Sciences , Nilore, Islamabad, Pakistan;5. Health Physics Division , Pakistan Institute of Nuclear Science and Technology , Nilore, Islamabad, Pakistan;6. Department of Physics , COMSATS Institute of Information Technology , Islamabad, Pakistan;7. Pakistan Atomic Energy Commission , Islamabad, Pakistan
Abstract:In Rechna Doab, samples of the most common vegetation, perennial grass Desmostachya bipinnata (dab), were collected along with soil samples from 29 sites. Natural radioactivity of 226Ra, 232Th/228Ac and 40K was measured by using high purity germanium-based gamma ray spectrometer. Activity concentration levels of 226Ra, 232Th/228Ac and 40K in soil were found to be 46.8±6.2 (36.0–57.6), 61.4±5.9 (48.2–73.2) and 644.8±73.9 (537.7–868.4) Bq kg?1 (dry mass), respectively, and those in vegetation were 2.74±1.70 (1.00–6.39), 2.24±0.59 (1.56–2.61) and 172.72±113.37 (53.14–469.24) Bq kg?1 (dry mass), respectively. The measured values of the activity concentration in vegetation are comparable with some other international data. Calculated soil to vegetation transfer factors of 226Ra, 228Ac and 40K were 0.06±0.03 (0.02–0.14), 0.04±0.01 (0.03–0.04) and 0.26±0.16 (0.09–0.69). The mean outdoor absorbed dose rate in air for the area under study was determined as 8.22 nGy h?1 and the mean indoor absorbed dose rate in air was 11.52 nGy h?1. The total annual effective dose to the general public from the vegetation was found to be (0.02–0.16) mSv, which is below the recommended limit value of 1 mSv y?1 for the general public. The dab vegetation under study was found to be radiologically safe for the population and environment.
Keywords:natural radioactivity  Gamma spectrometry  soil-to-plant transfer  absorbed dose  effective dose  radioecology
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