Published March 2015 | Version v1
Journal article

Multi-purpose hydrogen isotopes separation plant design

  • 1. Atomic Energy of Canada Limited - AECL, Chalk River, ON (Canada)

Description

There is a potential interest at AECL's Chalk River Laboratories to remove tritium from moderately tritiated light water and to reclaim tritiated, downgraded heavy water. With only a few limitations, a single CECE (Combined Electrolysis and Catalytic Exchange) process configuration can be designed to remove tritium from heavy water or light water and upgrade heavy water. Such a design would have some restrictions on the nature of the feed-stock and tritium product, but could produce essentially tritium-free light or heavy water that is chemically pure. The extracted tritium is produced as a small quantity of tritiated heavy water. The overall plant capacity is fixed by the total amount of electrolysis and volume of catalyst. In this proposal, with 60 kA of electrolysis a throughput of 15 kg*h-1 light water for detritiation, about 4 kg*h-1 of heavy water for detritiation and about 27 kg*h-1 of 98% heavy water for upgrading can be processed. Such a plant requires about 1,000 liters of AECL isotope exchange catalyst. The general design features and details of this multi-purpose CECE process are described in this paper, based on some practical choices of design criteria. In addition, we outline the small differences that must be accommodated and some compromises that must be made to make the plant capable of such flexible operation. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.13182/FST14-T5

Additional details

Identifiers

Publishing Information

Journal Title
Fusion Science and Technology
Journal Volume
67
Journal Issue
2
Journal Page Range
p. 258-261
ISSN
1536-1055

Conference

Title
10. International Conference on Tritium Science and Technology
Acronym
TRITIUM 2013
Dates
21-25 Oct 2013
Place
Nice Acropolis (France)

Optional Information

Notes
2 refs.