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Kumara, Sudeep K.; Shetty, Trilochana; Mohan, M.P.; Karunakara, N.; Mayya, V.S., E-mail: drkarunakara@gmail.com
Proceedings of the twentieth national symposium on environment - challenges in energy resource management and climate change2018
Proceedings of the twentieth national symposium on environment - challenges in energy resource management and climate change2018
AbstractAbstract
[en] Air exchange rate is an important parameter for assessing population exposure due to both conventional pollutants and radon, from the knowledge of source terms. It is generally estimated using CO2 concentration decay data. In the present paper we demonstrate the application of 222Rn as a natural tracer for determining indoor Air Change Rates (ACR) from the time series data on 222Rn concentration. ACR is estimated at different workplaces through time series analysis. The method has shown promising results and has potential advantages over conventional methods and these are discussed in this paper. (author)
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Tripathi, R.M.; Jha, S.K.; Pulhani, Vandana; Saradhi, I.V.; Patra, Aditi C.; Mishra, Manish K.; Sahoo, S.K. (Health Physics Division, Bhabha Atomic Research Centre, Mumbai (India)) (eds.); Kumar, Manish; Jain, Vikrant (Indian Institute of Technology, Gandhinagar (India)) (eds.); Kumar, Vinod A. (ed.) (Environmental Monitoring and Assessment Section, Health, Safety and Environment Group, Bhabha Atomic Research Centre, Mumbai (India)); Health, Safety and Environment Group, Bhabha Atomic Research Centre, Mumbai (India); Discipline of Earth Sciences, Indian Institute of Technology, Gandhinagar (India); 500 p; 2018; p. 455-456; NSE-20: 20. national symposium on environment - challenges in energy resource management and climate change; Gujarat (India); 13-15 Dec 2018
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Conference
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