Abstract
Cesium chemisorption models were developed for estimation of amount of cesium chemisorbed onto stainless steel type 304 (SS304) during light water reactor severe accident. However, existing chemisorption models cannot accurately reproduce experimental results. In this study, a modified cesium chemisorption model was constructed based on a penetration theory for gas-liquid mass transfer with chemical reaction and was able to adequately describe effects on concentration of cesium hydroxide in gaseous phase and silicon content in SS304. It was found that the modified model can more accurately reproduce the experimental data than the existing model.
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CITATION STYLE
Nakajima, K., Nishioka, S., Suzuki, E., & Osaka, M. (2019). Study on chemisorption model of cesium hydroxide onto stainless steel type 304. In International Conference on Nuclear Engineering, Proceedings, ICONE (Vol. 2019-May). American Society of Mechanical Engineers (ASME). https://doi.org/10.1299/mej.19-00564
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