Published 2023 | Version v1
Book

Tritium release from new ceramics of heavy elements

  • 1. Department of Physics, Government College for Women, Kolar (India)
  • 2. Department of Physics, Government First Grade College, Kolar (India)

Description

These fast-moving neutrons with large energy leave the fusion reactor in all directions. These neutrons leave the reactor and come to rest in a blanket component. Further, the nuclear processes induced by neutrons can yield tritium. The average energy required to make a triton is orders of magnitude more than the energy that can eventually be eliminated by burning the tritium produced in a fusion reactor. Tritium may be produced with high particle efficiency in neutron-induced processes. The main challenge is to identify the processes that create the required neutrons at an acceptable energy, low cost with sufficient quantity. The larger diffusion coefficient is observed for NaLi2Sn when compared to other studied compounds. Hence, the detail investigation on studied different compounds gives information regarding larger tritium release among the studied compounds

Part of:
Proceedings of the sixteenth biennial DAE-BRNS symposium on nuclear and radiochemistry: book of abstracts

Additional details

Publishing Information

Publisher
Bhabha Atomic Research Centre
Imprint Place
Mumbai (India)
Imprint Title
Proceedings of the sixteenth biennial DAE-BRNS symposium on nuclear and radiochemistry: book of abstracts
Imprint Pagination
469 p.
Journal Page Range
p. 168

Conference

Title
16. biennial DAE-BRNS symposium on nuclear and radiochemistry
Acronym
NUCAR-2023
Dates
1-5 May 2023
Place
Mumbai (India)

Optional Information