Stability and buffering capacity of the geosphere for long-term isolation of radioactive waste application to crystalline rock : workshop proceedings Manchester, United Kingdom, 13-15 November 2007.

Geological settings selected as potential host formations for the deep geological disposal of radioactive waste are chosen for, among other assets, their long-term stability and buffering capacity against destabilising events and processes. These proceedings present the outcomes of a geosphere stabi...

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Detalles Bibliográficos
Autor principal: Organisation for Economic Co-operation and Development.
Autores Corporativos: Organisation for Economic Co-operation and Development (-), Clay Club Workshop, OECD Nuclear Energy Agency
Formato: Libro electrónico
Idioma:Inglés
Publicado: Paris : OECD : Nuclear Energy Agency 2009.
Colección:Radioactive waste management (OECD Nuclear Energy Agency)
Materias:
Ver en Biblioteca Universitat Ramon Llull:https://discovery.url.edu/permalink/34CSUC_URL/1im36ta/alma991009705212206719
Descripción
Sumario:Geological settings selected as potential host formations for the deep geological disposal of radioactive waste are chosen for, among other assets, their long-term stability and buffering capacity against destabilising events and processes. These proceedings present the outcomes of a geosphere stability workshop, held in November 2007, that focused on crystalline and other types of hard, fractured rocks. The workshop underscored the fact that many such rocks are intrinsically stable environments that evolve extremely slowly and provide good buffering against external events and processes. The proceedings show a good understanding of the processes and events that can affect crystalline rocks and, although there is less confidence in predicting exactly when and where such events will occur and the volume of rock that will be affected, the extent of the impacts on a geological repository can be confidently addressed using bounding approaches supported by geological information from similar sites around the world.
Notas:"NEA No. 6362."
Descripción Física:1 online resource (302 pages)
Bibliografía:Includes bibliographical references (p. 299-301).
ISBN:9781282103283
9786612103285
9789264060579