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Immobolization of radioactive waste in ceramic based hosts : Radioactive waste Immobolization

  • Kartonierter Einband
  • 216 Seiten
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Ceramic materials have found numerous applications in science, technology and industry as mentioned earlier. One of the recent app... Weiterlesen
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Beschreibung

Ceramic materials have found numerous applications in science, technology and industry as mentioned earlier. One of the recent applications of titania and zirconia based ceramic precursors is in immobilization and solidification of radioactive isotopes in waste effluents coming out of nuclear establishments and power plants. Due to long term stability and integrity of the ceramic waste forms of high and intermediate level nuclear waste, several countries have now switched over from glass technology to ceramic technology of radwaste management. These and many more applications make ceramics materials an interesting area of research and engineering sciences. The book is particularly aimed at scientific and technical staff in the nuclear and waste management industries in addition to universities and research organizations active in these areas. It will also appeal to a wider audience with interests in environmental issues and will be of benefit to anyone who requires background information on radioactive issues connected with nuclear energy or defense processes, or hazardous waste sources, properties and treatments using crystallographic methods.

Autorentext

Dr. Ashish Bohre obtains his Ph.D. degree from Dr. Harisingh Gour Central University Sagar, in 2012. Presently he is working as a post-doctoral research fellow in Delhi University. Dr. Bohre is an author of several research articles and books of international repute.

Produktinformationen

Titel: Immobolization of radioactive waste in ceramic based hosts : Radioactive waste Immobolization
Autor:
EAN: 9783954891696
ISBN: 978-3-95489-169-6
Format: Kartonierter Einband
Herausgeber: Anchor Academic Publishing
Genre: Sonstiges
Anzahl Seiten: 216
Gewicht: 349g
Größe: H220mm x B155mm x T14mm
Jahr: 2013