Study of a zirconium getter for purification of xenon gas

Oxygen, nitrogen and methane purification efficiencies for a common zirconium getter are measured in 1050 Torr of xenon gas. Starting with impurity concentrations near 10 −6 g/g, the outlet impurity level is found to be less than 120 ×10 −12 g/g for O 2 and less than 950×10 −12 g/g for N 2. For meth...

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Veröffentlicht in:Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Accelerators, spectrometers, detectors and associated equipment, 2010-08, Vol.620 (2), p.594-598
Hauptverfasser: Dobi, A., Leonard, D.S., Hall, C., Kaufman, L.J., Langford, T., Slutsky, S., Yen, Y.-R.
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Sprache:eng
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Zusammenfassung:Oxygen, nitrogen and methane purification efficiencies for a common zirconium getter are measured in 1050 Torr of xenon gas. Starting with impurity concentrations near 10 −6 g/g, the outlet impurity level is found to be less than 120 ×10 −12 g/g for O 2 and less than 950×10 −12 g/g for N 2. For methane we find residual contamination of the purified gas at concentrations varying over three orders of magnitude, depending on the purifier temperature and the gas flow rate. A slight reduction in the purifier's methane efficiency is observed after 13 mg of this impurity has been absorbed, which we attribute to partial exhaustion of the purifier's capacity for this species. We also find that the purifier's ability to absorb N 2 and methane can be extinguished long before any decrease in O 2 performance is observed, and slower flow rates should be employed for xenon purification due to the cooling effect that the heavy gas has on the getter.
ISSN:0168-9002
1872-9576
DOI:10.1016/j.nima.2010.03.151