Published April 2005 | Version v1
Miscellaneous Open

Water detritiation: better catalysts for liquid phase catalytic exchange

Description

Fusion reactors are our hope for a clean nuclear energy. But as they shall handle huge amounts of tritium, 1.5 1019 Bq GWth-1 a-1 or about 50 000 times more tritium than light water fission reactors, they need detritiation. Most tritium losses can be trapped as or can easily be transformed into tritiated water. Water detritiation is preferably based on the multiplication of the large equilibrium isotope effect during the exchange reaction of tritium between hydrogen gas and liquid water in a counter current trickle bed reactor. Such LPCE (Liquid Phase Catalytic Exchange) requires an efficient hydrophobic catalyst. SCK-CEN invented and developed such a catalyst in the past. In combination with an appropriate packing, different batches of this catalyst performed very well during years of extensive testing, allowing to develop the ELEX process for water detritiation at inland reprocessing plants. The main objectives of this study were to reproduce and possibly improve the SCK-CEN catalyst for tritium exchange between hydrogen and liquid water; and to demonstrate the high overall exchange rate and thus high detritiation factors that can be realized with it in a small and simple LPCE column under typical but conservative operating conditions

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Part of:
Scientific Report 2004

Additional details

Identifiers

Publishing Information

Publisher
Belgian Nuclear Research Center SCK-CEN
Imprint Place
Mol (Belgium)
Imprint Title
Scientific Report 2004
Imprint Pagination
186 p.
Journal Page Range
p. 74-75
Report number
INIS-BE--0009

Optional Information

Notes
The abstract is a contribution to the 2004 Scientific Report of the Belgian Nuclear Research Centre SCK-CEN