Published March 2004 | Version v1
Journal article

Radioactivity measurements by liquid scintillation spectroscopy

Creators

  • 1. CEA Saclay, Dir. de la Recherche Technologique, Lab. National Henri Becquerel, 91 - Gif sur Yvette (France)

Description

The activity measurement techniques by liquid scintillation spectroscopy consist to mix the radioactive solution to measure with a scintillating liquid and to transform the ionizing radiations, resulting from decays, into light, detectable and quantifiable. The main advantages of these techniques are the easiness of preparation of the radioactive sources, the geometric efficiency of detection of 4π and the possibility of detection of low-level energy radiations. There are one of the only methods giving the possibility to measure the activity of pure β radionuclides; indeed, the nuclear disintegration is not accompanied of gamma radiations detectable by other techniques. There are one of the only methods too of measurement of radionuclides which disintegrate by electron capture and especially those leading to the emission of low-level energy ionizing radiations. Liquid scintillation spectroscopy can be used as an absolute method of activity measurement that is to say without the use of a calibration standard. The modern liquid scintillation counting devices can be very sensitive; the measurement of micro-activities being possible. Some of the applications of these activity measurement techniques are the carbon 14 dating and the geological tracing. Their main disadvantage is the global energetic yield which is low and variable in terms of the composition of the scintillation source necessitating to calculate the detection yield for each condition of measurement. (O.M.)

Additional details

Additional titles

Original title (French)
Mesures de radioactivite par scintillation liquide

Publishing Information

Journal Title
Techniques de l'Ingenieur. Analyse et Caracterisation
Journal Volume
P3
Journal Issue
P149
Journal Page Range
p. P2552.1-P2552.19
ISSN
1762-8717

Optional Information

Notes
8 refs.