Wednesday, 20 November 2013

[A387.Ebook] Download PDF An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

Download PDF An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

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An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee



An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

Download PDF An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

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An Introduction to Nuclear Waste Immobilisation, by Michael I Ojovan, William E Lee, William E. Lee

Safety and environmental impact is of uppermost concern when dealing with the movement and storage of nuclear waste. The 20 chapters in 'An Introduction to Nuclear Waste Immobilisation' cover all important aspects of immobilisation, from nuclear decay, to regulations, to new technologies and methods. Significant focus is given to the analysis of the various matrices used in transport: cement, bitumen and glass, with the greatest attention being given to glass. The last chapter concentrates on the performance assessment of each matrix, and on new developments of ceramics and glass composite materials, thermochemical methods and in-situ metal matrix immobilisation. The book thoroughly covers all issues surrounding nuclear waste: from where to locate nuclear waste in the environment, through nuclear waste generation and sources, treatment schemes and technologies, immobilisation technologies and waste forms, disposal and long term behaviour. Particular attention is paid to internationally approved and worldwide-applied approaches and technologies.

* Each chapter focuses on a different matrix used in nuclear waste immobilisation: Cement, bitumen, glass and new materials.
* Keeps the most important issues surrounding nuclear waste – such as treatment schemes and technologies, and disposal - at the forefront.

  • Sales Rank: #5774825 in Books
  • Published on: 2005-11-18
  • Released on: 2005-09-12
  • Original language: English
  • Number of items: 1
  • Dimensions: .90" h x 7.00" w x 9.76" l, 1.54 pounds
  • Binding: Hardcover
  • 250 pages

Review
"...an excellent source of knowledge for undergraduates who require general information on nuclear waste and its immobilisation."
-Dr. John Fernie in MATERIALS WORLD, May 2007

About the Author
Dr Michael I. Ojovan is an Associate Professor (Reader) in Materials Science and Waste Immobilisation at the Department of Materials Science and Engineering, The University of Sheffield, UK.

Professor William E. Lee FREng is Deputy Chair of the Government advisory Committee on Radioactive Waste Management (CoRWM), and Director of the Centre for Nuclear Engineering at Imperial College London, UK.

Most helpful customer reviews

6 of 6 people found the following review helpful.
Understanding Radioactive Materials and How to "Imprison" Them
By Jan Peczkis
Ojovan and Lee provide a solid introduction to the nature of radioactivity. They include a useful table of radioactive isotopes and their specific activities (pp. 18-20), expressed in terms of Ci/g. They also provide a fair amount of detail on the doses arising from natural background radiation. Various models (e. g., linear) of the carcinogenic effects of radiation are also considered.

The authors focus on environmentally-significant isotopes such as Tritium, Cobalt-60, Strontium-90, and Caesium-137. Various nuclear disasters are discussed, notably the one at Chernobyl.

Waters that are contaminated with radioactive isotopes can be "cleaned" by several methods. Ojovan and Lee focus on chemical methods in their Chapter 14, but do not consider bioremediation methods.

Only the latter portion of the book is actually devoted to the immobilization of radioactive wastes. Radioactive isotopes can be "locked up" in various cements, bituminous materials, vitreous substances, crystalline waste-forms (such as monazite, pyrochlore, Synroc, etc.), various metallic substances, etc. The authors compare different substances as to their efficacy for waste immobilization, and additionally focus on such things as leach rate, radiation-induced damage to the substances, and retention times for wastes.

See all 1 customer reviews...

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