Residual Radioactive Isotope Effects on the Flushing Water during the Decommissioning Period of Heavy-Ion Treatment Facilities: Dependence of Concrete Models

Author:

Kum Oyeon1

Affiliation:

1. President, Institute for Modeling and Simulation Convergence, Gongkyungro 7gil 40, Suseonggu, Daegu 42045, Korea; Professor, School of Electrical, Electronics, and Computer Engineering, Kyungpook National Univ., 80 Daehakro, Bukgu, Daegu 41566, Korea.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Waste Management and Disposal,Geotechnical Engineering and Engineering Geology,Water Science and Technology,General Chemical Engineering,Environmental Chemistry,Environmental Engineering

Reference11 articles.

1. Sorption behavior of cesium, cobalt, and europium radionuclides onto hydroxyl magnesium silicate;Hamed M. M.;Radiochim. Acta,2016

2. KINS (Korea Institute of Nuclear Safety). 2014. “Korea Institute of Nuclear Safety.” Accessed May 17 2018. http://www.kins.re.kr/main.do.

3. Development of easy-to-use interface for nuclear transmutation computing, VCINDER code

4. Radiation Protection Study for the First Korea Heavy-Ion Medical Accelerator Facility

5. Kum O. and K. Kim. 2015. “Increase resilience by uncovering severe accidents via physical modeling & simulations.” In Proc. 2015 Int. Workshop on Post-Fukushima Challenges on Severe Accident Mitigation and Research Collaboration 1–6. Daejeon Korea: Daejeon Convention Center.

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