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Application of multiple quench parameters for confirmation of radionuclide identity in radioanalytical quality control

Application of multiple quench parameters for confirmation of radionuclide identity in radioanalytical quality control
Application of multiple quench parameters for confirmation of radionuclide identity in radioanalytical quality control
Robust and reliable radiochemical analysis is the key factor in the appropriate disposal and management of radioactive wastes arising from the nuclear industry, decommissioning projects, medical, and scientific institutions. There is an ever increasing number of challenging projects that involve rapid analysis of large batches of samples and require rigorous quality control systems capable of positively identifying incorrect or questionable results which may lead to costly consequences at the latter stages of the waste disposal process. Combination of SQP(E) and SQPI LSC spectral parameters allows for quick and reliable checking of large datasets without the need for individual manual spectrum checks.
0236-5731
Gaca, Pawel
3d23473d-db81-436a-a12d-ad707db4abc8
Reading, David
e875ad0e-0316-469b-9e82-f93f48ef4734
Warwick, Phillip
f2675d83-eee2-40c5-b53d-fbe437f401ef
Gaca, Pawel
3d23473d-db81-436a-a12d-ad707db4abc8
Reading, David
e875ad0e-0316-469b-9e82-f93f48ef4734
Warwick, Phillip
f2675d83-eee2-40c5-b53d-fbe437f401ef

Gaca, Pawel, Reading, David and Warwick, Phillip (2019) Application of multiple quench parameters for confirmation of radionuclide identity in radioanalytical quality control. Journal of Radioanalytical and Nuclear Chemistry. (doi:10.1007/s10967-019-06788-z).

Record type: Article

Abstract

Robust and reliable radiochemical analysis is the key factor in the appropriate disposal and management of radioactive wastes arising from the nuclear industry, decommissioning projects, medical, and scientific institutions. There is an ever increasing number of challenging projects that involve rapid analysis of large batches of samples and require rigorous quality control systems capable of positively identifying incorrect or questionable results which may lead to costly consequences at the latter stages of the waste disposal process. Combination of SQP(E) and SQPI LSC spectral parameters allows for quick and reliable checking of large datasets without the need for individual manual spectrum checks.

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e-pub ahead of print date: 4 October 2019
Published date: 2019

Identifiers

Local EPrints ID: 435395
URI: http://eprints.soton.ac.uk/id/eprint/435395
ISSN: 0236-5731
PURE UUID: bbe0c2e5-2c83-440a-9636-a2f006a2cc0e
ORCID for David Reading: ORCID iD orcid.org/0000-0002-6697-8525
ORCID for Phillip Warwick: ORCID iD orcid.org/0000-0001-8774-5125

Catalogue record

Date deposited: 04 Nov 2019 17:30
Last modified: 17 Mar 2024 02:42

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