Download e-book for kindle: Deep Geological Disposal of Radioactive Waste, Volume 9 by W. R. Alexander, Linda McKinley

By W. R. Alexander, Linda McKinley

ISBN-10: 0080450105

ISBN-13: 9780080450100

This ebook offers a severe evaluation of designing, siting, developing and demonstrating the security and environmental impression of deep repositories for radioactive wastes. it truly is established to supply a large standpoint of this multi-faceted, multi-disciplinary subject: offering sufficient element for a non-specialist to appreciate the elemental ideas concerned and with large references to resources of extra unique details.

Emphasis is especially a lot on "deep” geological disposal - no less than a few tens of metres under land floor and, in lots of instances, many hundred of metres deep. also, simply radioactive wastes are thought of without delay - even if such wastes frequently comprise additionally major chemotoxic or differently damaging elements. the various rules concerned are usually acceptable to different repository innovations (e.g. near-surface or on-surface disposal) and, certainly, to different varieties of damaging waste.

* offers a present serious evaluation in designing, siting, developing and demonsrating the security and environmental impression of deep repositories for radwaste
* Addresses the basic rules of radioactive waste with updated examples and real-world case studies
* Written for a multi-disciplinary viewers, with a suitable point of aspect to permit a non-specialist to appreciate

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Extra resources for Deep Geological Disposal of Radioactive Waste, Volume 9

Sample text

Compaction Compaction is a well developed and reliable volume reduction technology that is used for processing mainly solid L/ILW-SL. Various types of compactors are used within the nuclear industry, ranging from small, low-force compactors ($ 5 Mg) to supercompactors ($1000 Mg). Volume reduction factors of between 3 and 10 are achievable depending on the waste material being treated. With regard to compaction of ILW, this was, until recently, generally used for laboratory scale operations. The introduction in 2001 of commercial scale super-compaction of SF structural materials at the French reprocessing facility at La Hague is the first of its kind and is operating successfully.

Compaction Compaction is a well developed and reliable volume reduction technology that is used for processing mainly solid L/ILW-SL. Various types of compactors are used within the nuclear industry, ranging from small, low-force compactors ($ 5 Mg) to supercompactors ($1000 Mg). Volume reduction factors of between 3 and 10 are achievable depending on the waste material being treated. With regard to compaction of ILW, this was, until recently, generally used for laboratory scale operations. The introduction in 2001 of commercial scale super-compaction of SF structural materials at the French reprocessing facility at La Hague is the first of its kind and is operating successfully.

The position of priority 1 is clear but 2 or 3 will depend on whether more weight is put on the inventory or the material content. Therefore, the positioning of the priority tends to become more subjective the higher the number. However, using such a priority key table, it is possible to identify whether it is wise to group waste types together (to reduce the number of waste types to be considered) and also to prioritise any work that is required in obtaining additional information, etc. recommended that -wastes be combined with pure -wastes, even if they contain the same type of materials, as the long-lived -wastes require longer periods of immobilisation in a repository than the -wastes.

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Deep Geological Disposal of Radioactive Waste, Volume 9 by W. R. Alexander, Linda McKinley


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