The Borexino experiment, for the study of solar neutrino physics, requires radiopurity at the level of 5 x 10(-16) g/g U-238 equivalent (or 6 X 10(-9) Bq/kg) on a detector mass of many tons of scintillator. Feasibility studies are performed in a counting test facility now operating at LNGS, which consists of 4 t of liquid scintillator viewed by 100 photomultipliers and shielded by 100 t of water. The accomplishment of this goal requires the shielding liquid, water, to be at the 10(-13) g/g contamination level (1.2 X 10(-6) Bq/kg) or better. This paper describes the water purification system; it consists of a combination of several purification processes to remove particulate, radioactive ions, dissolved gases and other impurities. Residual contaminations are measured by analytical or direct-counting techniques. For radon measurement, particularly challenging at this low activity levels, a low background counting method has been developed.

The water purification system for the low background counting test facility of the Borexino experiment at Gran Sasso

DE BARI, ANTONIO;PEROTTI, ANGELO
1996-01-01

Abstract

The Borexino experiment, for the study of solar neutrino physics, requires radiopurity at the level of 5 x 10(-16) g/g U-238 equivalent (or 6 X 10(-9) Bq/kg) on a detector mass of many tons of scintillator. Feasibility studies are performed in a counting test facility now operating at LNGS, which consists of 4 t of liquid scintillator viewed by 100 photomultipliers and shielded by 100 t of water. The accomplishment of this goal requires the shielding liquid, water, to be at the 10(-13) g/g contamination level (1.2 X 10(-6) Bq/kg) or better. This paper describes the water purification system; it consists of a combination of several purification processes to remove particulate, radioactive ions, dissolved gases and other impurities. Residual contaminations are measured by analytical or direct-counting techniques. For radon measurement, particularly challenging at this low activity levels, a low background counting method has been developed.
1996
The Physics category includes resources of a broad, general nature that contain materials from all areas of physics, The category also includes resources specifically concerned with the following physics sub-fields: mathematical physics, particle and nuclear physics, physics of fluids and plasmas, quantum physics, and theoretical physics.
Esperti anonimi
Inglese
Internazionale
STAMPA
370
2-3
605
608
4
Esperimento Borexino. Citato 11 volte al 6 luglio 2009.
water purification; U-238; Th-232; K-40
http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6TJM-3VTC4D8-4V&_user=3719172&_rdoc=1&_fmt=&_orig=search&_sort=d&_docanchor=&view=c&_acct=C000061210&_version=1&_urlVersion=0&_userid=3719172&md5=0178722bebc2e99e709cc7aee88d2735
10
info:eu-repo/semantics/article
262
Balata, M.; Cadonati, L.; Laubenstein, M.; Heusser, G.; Giammarchi, M. G.; Scardaoni, R.; Torri, V.; Cecchet, G.; DE BARI, Antonio; Perotti, Angelo...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/104876
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