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Title Geological repository systems for safe disposal of spent nuclear fuels and radioactive waste / edited by Joonhong Ahn and Michael J. Apted.

Imprint Boca Raton : CRC Press, 2010.

Copies

Location Call No. OPAC Message Status
 Axe Elsevier ScienceDirect Ebook  Electronic Book    ---  Available
Description 1 online resource (xxvi, 762 pages) : illustrations.
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Series Woodhead Publishing series in energy ; no. 9
Woodhead Publishing in energy ; no. 9.
Bibliography Includes bibliographical references and index.
Contents pt. I. Introduction to geological disposal of spent nuclear fuels and radioactive waste -- pt. II. Geological repository systems : characterisation, site surveying and construction technologies and techniques -- pt. III. Engineered barrier systems for geological repositories : containment materials and technology -- pt. IV. Performance assessment, expert judgement and knowledge management for geological repository systems -- pt. V. Radiation protection, regulatory methodologies environmental monitoring and social engagement for geological repository systems.
Summary Geological disposal has been internationally adopted as the most effective approach to assure the long-term, safe disposition of the used nuclear fuels and radioactive waste materials produced from nuclear power generation, nuclear weapons programs, medical, treatments, and industrial applications. Geological repository systems take advantage of natural geological barriers augmented with engineered barrier systems to isolate these radioactive materials from the environment and from future populations. Geological repository systems for safe disposal of spent nuclear fuels and radioactive waste critically reviews the state-of-the-art technologies, scientific methods, regulatory developments, and social engagement approaches directly related to the implementation of geological repository systems. Part one introduces geological disposal, including multiple-barrier geological repositories, as well as reviewing the impact of nuclear fuel recycling practices and underground research laboratory activities on the development of disposal concepts. Part two reviews geological repository siting in different host rocks, including long-term stability analysis and radionuclide transport modelling. Reviews of the range of engineered barrier systems, including waste immobilisation technologies, container materials, low pH concretes, clay-based buffer and backfill materials, and barrier performance are presented in Part three. Part four examines total system performance assessment and safety analyses for deep geological and near-surface disposal, with coverage of uncertainty analysis, use of expert judgement for decision making, and development and use of knowledge management systems. Finally, Part five covers regulatory and social approaches for the establishment of geological disposal programs, from the development of radiation standards and risk-informed, performance-based regulations, to environmental monitoring and social engagement in the siting and operation of repositories. With its distinguished international team of contributors, Geological repository systems for safe disposal of spent nuclear fuels and radioactive waste is a standard reference for all nuclear waste management and geological repository professionals and researchers. Critically reviews the state-of-the-art technologies, scientific methods, regulatory developments, and social engagement approaches related to the implementation of geological repository systemsChapters introduce geological disposal and review the development of disposal conceptsExamines long-term stability analysis, the range of engineered barrier systems and barrier performance.
Subject Radioactive waste disposal.
TECHNOLOGY & ENGINEERING -- Mechanical.
Radioactive waste disposal
Added Author Ahn, Joonhong.
Apted, Michael J.
Other Form: Print version: Ahn, J. Geological Repository Systems for Safe Disposal of Spent Nuclear Fuels and Radioactive Waste. Burlington : Elsevier Science, ©2010 9781845695422
ISBN 9781845699789 (electronic bk.)
1845699785 (electronic bk.)
9781845695422 (Woodhead Pub.)
9781439831090 (CRC Press)
Standard No. DEBBG BV042314416
DEBSZ 41426620X
DEBSZ 431593604
AU@ 000055874699
CHNEW 001011035

 
    
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