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© 2013

Thoria-based Nuclear Fuels

Thermophysical and Thermodynamic Properties, Fabrication, Reprocessing, and Waste Management

  • Dasarathi Das
  • S. R. Bharadwaj
Book

Part of the Green Energy and Technology book series (GREEN)

Table of contents

  1. Front Matter
    Pages i-xii
  2. D. Das
    Pages 1-9
  3. T. R. Govindan Kutty, Joydipta Banerjee, Arun Kumar
    Pages 11-70
  4. S. R. Bharadwaj, R. Mishra, M. Basu, D. Das
    Pages 107-156
  5. D. Das, M. Basu, S. Kolay, A. N. Shirsat
    Pages 157-203
  6. S. K. Mukerjee, T. R. G. Kutty, N. Kumar, Rajesh V. Pai, Arun Kumar
    Pages 205-277
  7. P. V. Achuthan, A. Ramanujam
    Pages 279-333
  8. Kanwar Raj, C. P. Kaushik, R. K. Mishra
    Pages 335-405
  9. Back Matter
    Pages 407-418

About this book

Introduction

This book presents the state of the art on thermophysical and thermochemical properties, fabrication methodologies, irradiation behaviours, fuel reprocessing procedures, and aspects of waste management for oxide fuels in general and for thoria-based fuels in particular.  The book covers all the essential features involved in the development of and working with nuclear technology. With the help of key databases, many of which were created by the authors, information is presented in the form of tables, figures, schematic diagrams and flow sheets, and photographs. This information will be useful for scientists and engineers working in the nuclear field, particularly for design and simulation, and for establishing the technology. One special feature is the inclusion of the latest information on thoria-based fuels, especially on the use of thorium in power generation, as it has less proliferation potential for nuclear weapons. Given its natural abundance, thorium offers a future alternative to uranium fuels in nuclear technology. In closing, the latest information on conventional uranium and plutonium fuels is also provided.

Keywords

Chemistry of Fission Products High Burnup Fuel Nuclear Fuel Fabrication Nuclear Fuel Waste Management Oxide Fuels of Nuclear Reactors Thermophysical and Thermodynamic Properties Thorium Dioxide Transport Properties of Volatile Products

Editors and affiliations

  • Dasarathi Das
    • 1
  • S. R. Bharadwaj
    • 2
  1. 1.MumbaiIndia
  2. 2.Bhabha Atomic Research Centre Chemistry DivisionTrombay, MumbaiIndia

About the editors

Dr. D. Das has worked for 37 years in the field of high temperature thermochemistry of nuclear materials, and also in solid oxide fuel cell materials. Recently, he retired as senior scientist (Former Head, Chemistry Division, Bhabha Atomic Research Centre, Trombay, Mumbai) in the Department of Atomic Energy, India. He worked extensively on the thermodynamic evaluation of thoria based fuels while participating and conducting the programme of a task force for evaluating thermodynamic and transport properties of the oxide fuels for Advanced Heavy Water Reactor (AHWR) technology for thorium utilization. He has published more than 100 papers in reputed international journals.

Dr. Shyamala Bharadwaj is presently Head, Fuel Cell Materials & Catalysis Section, Chemistry Division, Bhabha Atomic Research Centre, Mumbai, India. Her main area of work during the past 36 years has been determination of thermodynamic properties of nuclear materials using various techniques such as vapour pressure measurements, thermogravimetry, isoperibol calorimetry etc. She was part of the task force for evaluating thermodynamic and transport properties of the oxide fuels for Advanced Heavy Water Reactor (AHWR) technology for thorium utilization. During 2000-2001, she worked as guest scientist at Juelich Research Centre, Juelich, Germany on Solid Oxide Fuel Cell (SOFC) materials. Her current interests are in the fields of Intermediate Temperature Solid Oxide Fuel Cells (ITSOFC) and Sulphur – Iodine thermochemical cycle for generation of hydrogen from water. She has more than 120 papers in refereed international journals.

 

Bibliographic information

  • Book Title Thoria-based Nuclear Fuels
  • Book Subtitle Thermophysical and Thermodynamic Properties, Fabrication, Reprocessing, and Waste Management
  • Editors Dasarathi Das
    S. R. Bharadwaj
  • Series Title Green Energy and Technology
  • Series Abbreviated Title Green Energy,Technology
  • DOI https://doi.org/10.1007/978-1-4471-5589-8
  • Copyright Information Springer-Verlag London 2013
  • Publisher Name Springer, London
  • eBook Packages Energy Energy (R0)
  • Hardcover ISBN 978-1-4471-5588-1
  • Softcover ISBN 978-1-4471-6956-7
  • eBook ISBN 978-1-4471-5589-8
  • Series ISSN 1865-3529
  • Series E-ISSN 1865-3537
  • Edition Number 1
  • Number of Pages XII, 418
  • Number of Illustrations 173 b/w illustrations, 0 illustrations in colour
  • Topics Nuclear Energy
    Nuclear Energy
    Thermodynamics
    Nuclear Physics, Heavy Ions, Hadrons
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