STUDY ON RETENTION OF HYDROGEN ISOTOPES AND HELIUM IN NICKEL USING TRITIUM BEAM TEST APPARATUS
Citation
M. Okada et al., STUDY ON RETENTION OF HYDROGEN ISOTOPES AND HELIUM IN NICKEL USING TRITIUM BEAM TEST APPARATUS, Journal of nuclear materials, 248, 1997, pp. 72-77
Categorie Soggetti
Nuclear Sciences & Tecnology","Mining & Mineral Processing","Material Science
SICI code
0022-3115(1997)248:<72:SOROHI>2.0.ZU;2-7
Abstract
In fusion reactors, a membrane of some metals, such as nickel, may be
employed to enhance the pumping efficiency for helium ash because of i
ts capacity to retain helium. In the present study, retention behavior
of helium and hydrogen isotopes including tritium in nickel was inves
tigated by means of thermal desorption spectroscopy (TDS), using a new
beam irradiation system which is capable of handling tritium. In the
thermal desorption spectra of helium (He), at least two helium desorpt
ion peaks were observed at 490-555 K and 715-740 K, where hydrogen iso
tope irradiations after helium irradiations were found to enhance the
helium release and shift the desorption peak temperature to lower temp
eratures. However, the peak temperatures of helium desorption in heliu
m irradiations after hydrogen isotope irradiation showed little differ
ence from that without hydrogen isotopes irradiations. In the tritium
experiments, tritium was supplied either directly from an ampoule or f
rom a sorption pump to the vacuum chamber pumped by a cryopump. An ion
beam of hydrogen isotopes containing tritium was irradiated to nickel
at room temperature and the TDS spectra for DT and T-2 were obtained.
It was revealed that both DT and T-2 have at least two desorption pea
ks, appearing at 410-425 K and 600-650 K for the former and at 500-520
K and 650-670 K for the latter. (C) 1997 Elsevier Science B.V.