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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.120 Nuclear energy engineering>27.120.30 Fissile materials>BS EN ISO 15366-2:2016 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography Samples containing plutonium and uranium in the nanogram range and below
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immediate downloadReleased: 2016-06-30
BS EN ISO 15366-2:2016 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography Samples containing plutonium and uranium in the nanogram range and below

BS EN ISO 15366-2:2016

Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography Samples containing plutonium and uranium in the nanogram range and below

CURRENCY
LANGUAGE
English
Standard number:BS EN ISO 15366-2:2016
Pages:20
Released:2016-06-30
ISBN:978 0 580 90934 4
Status:Corrigendum
DESCRIPTION
This standard BS EN ISO 15366-2:2016 Nuclear fuel technology. Chemical separation and purification of uranium and plutonium in nitric acid solutions for isotopic and isotopic dilution analysis by solvent extraction chromatography is classified in these ICS categories:
  • 27.120.30 Fissile materials and nuclear fuel technology
ISO 15366-2:2014 describes procedures to chemically separate and purify uranium and plutonium in dissolved solutions of irradiated light water reactor fuels and in samples of high active liquid waste of spent fuel reprocessing plants, prior to their isotopic analysis by e.g. mass spectrometric method or alpha spectrometry. ISO 15366-2:2014 describes a slightly different separation technique from ISO 15366-1, based on the same chemistry, using smaller columns, different support material and special purification steps, applicable to samples containing plutonium and uranium amounts in the nanogram range and below. The detection limits were found to be 500 pg plutonium and 500 pg uranium.
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