The Belgium underground research facility: Status on the demonstration issues for radioactive waste disposal in clay

Author:

Neerdael B,Boyazis J.P

Funder

European Commission

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference10 articles.

1. Cornelis, B., Van Iseghem, P., 1994. In-situ corrosion behaviour of candidate canister/overpack materials in clay. In: McMenamin, T. (Ed.), In-situ Testing of Radioactive Waste Forms and Engineered Barriers, Preprint of EUR 15629.

2. De Preter, P., Put, M., De Cannière, P., Moors, H., 1992. Migration of radionuclides in Boom clay. Study performed under cost sharing contract as part of the European Atomic Energy Community's programme on management and storage of radioactive waste. NIROND 92-07 Rep., Contract FI 2W/0039, State-of-the-Art Rep.

3. Marivoet, J., 1992. UPDATING 1990: updating of the performance assessments of the geological disposal of high-level and medium-level wastes in the Boom clay formation, Rep. BLG 634 SCK–CEN, Mol.

4. Neerdael, B., De Bruyn, D., 1988. Excavation response studies at the Mol facility, NEA Workshop on Excavation Responses in Deep Radioactive Waste Repositories—Implications for Engineering Design and Safety Performance, Winnipeg, April 1988, OECD, pp. 465–479.

5. NIRAS–ONDRAF, 1989. SAFIR: Safety Assessment Feasibility and Interim Report, NIRAS–ONDAF, Brussels.

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