Evaluation method of iodine re-evolution from an in-containment water pool after a loss of coolant accident, Part II: Evaluation of pH and iodine re-evolution

Author:

Kim Tae Hyeon,Jeong Ji HwanORCID

Funder

National Research Foundation of Korea

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference25 articles.

1. Baker Jr. L., Ritzman, R.L., Fink, J.K., Simms, R., Shlenger, B.J., Herceg, J.E., Summary results of the treat source term experiments project (STEP), in: Proceedings of the International ENS/ANS Conference on Thermal Reactor Safety, Vol. 6, 2–7 October 1988, pp. 2127–2136

2. Beahm, E.C., Lorenz, R.A., Weber, C.F., Iodine Evolution and pH Control, NUREG/CR-5950 (ORNL/TM-12242), Oak Ridge National Laboratory, 1992.

3. Clément, B., Cantrel, L., Ducros, G., Funke, F., Herranz, L., Rydl, A., Weber, G., Wren, C., State of the art report on iodine chemistry, NEA/CSNI/R(2007)1, OECD, Paris, 2007.

4. DiNunno, J.J., Baker, R.E., Anderson, F.D., 1962. Waterfield, R.L., Calculation of Distance Factors for Power and Test Reactor Sites, Technical Information Documents (TID 14844), U.S. Atomic Energy Commission.

5. Elrick, R.M., Sallach, R.A., 1983. High temperature fission product chemistry and transport in steam, in: Proceedings of the International Conference on Thermal Nuclear Reactor Safety, NUREG/CP-0027-vol.2, pp. 1289–1306.

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