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Evaluation of passive autocatalytic recombiners operation efficiency by means of the lumped parameter approach

* This paper is based on a lecture given at the Polish Energy Mix-2014 Conference held at Ustroń Śląski, Poland, on 15–17 October 2014. References 1. Sehgal, B. R. (Ed.) (2012). Nuclear safety in light water reactors. Severe accident phenomenology . Elsevier. 2. Bury, T. (2005). Analysis of thermal and flow processes within containments of water nuclear reactors during loss-of-coolant accidents . PhD thesis, Institute of Thermal Technology, Silesian University of Technology, Gliwice. 3. Fic, A., & Skorek, J. (1993). Mathematical model of

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Application of X-ray fluorescence method for elemental analysis of PM2.5 fraction

, H., Querol, X., Rodriguez, S., Salma, L., Schwarz, J., Smolik, J., Schneider, J., Spindler, G., ten Brink, H., Tursic, J., Viana, M., Wiedensohler, A., & Raes, F. (2010). A European aerosol phenomenology-3: Physical and chemical characteristics of particulate matter from 60 rural, urban, and kerbside sites across Europe. Atmos. Environ., 44, 1308-1320. DOI: 10.1016/j. atmosenv.2009.12.011. 15. Watson, G. J., Chow, C. J., & Houck, J. E. (2001). PM2.5 chemical source profiles for vehicle exhaust, vegetative burning, geological material and coal

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