Validation of a method for measurement of 14C in air and its application for estimation of 14C levels around Tarapur nuclear site

Author:

Baburajan A.,Dalvi S. S.,Sudheendran V.,Varakhedkar V. K.,Saradhi I. V.,Ravi P. M.,Karunakara N.

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health,Spectroscopy,Pollution,Radiology Nuclear Medicine and imaging,Nuclear Energy and Engineering,Analytical Chemistry

Reference20 articles.

1. UNSCEAR (2000) United Nations Scientific Committee on the effect of atomic radiation (2000), Annex-a, Dose Assessment, Tritium-Carbon-14 and Vol. I: Sources UN Scientific Committee on Effects of Atomic Radiation, United Nations, New York United Nations, New York

2. Advisory Committee on Radiological Protection (1995) The management of 14C in Canadian nuclear facilities, ACRP-14. Advisory Committee on Radiological Protection (Committee of the Atomic Energy Control Board of Canada), Ottawa, Ontario

3. Roussel-Debet S (2006) Distribution of 14C in the terrestrial environment close to French nuclear power plants. J Environ Radioact 87(3):246–259

4. Takahashi BT (2011) Development and analysis of a dynamic compartment model to predict 14C behaviour in rice Paddy field for dose assessment. Proc Radiochim 268(1):263–268

5. Sohn W, Kang D-W, Kim W-S (2012) As estimation of 14C inventory at Wolsong nuclear power plant in the republic of Kore. Korea Electric Power Research Institute, Daejoen

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