| Literature DB >> 28344376 |
R Jakopič1, Y Aregbe1, S Richter1, E Zuleger2, S Mialle2, S D Balsley3, U Repinc3, J Hiess3.
Abstract
In the frame of the accountancy measurements of the fissile materials, reliable determinations of the plutonium and uranium content in spent nuclear fuel are required to comply with international safeguards agreements. Large-sized dried (LSD) spikes of enriched 235U and 239Pu for isotope dilution mass spectrometry (IDMS) analysis are routinely applied in reprocessing plants for this purpose. A correct characterisation of these elements is a pre-requirement for achieving high accuracy in IDMS analyses. This paper will present the results of external verification measurements of such LSD spikes performed by the European Commission and the International Atomic Energy Agency.Entities:
Keywords: IDMS; ITV2010; Large-sized dried spikes; Plutonium; Uranium
Year: 2016 PMID: 28344376 PMCID: PMC5346148 DOI: 10.1007/s10967-016-5123-8
Source DB: PubMed Journal: J Radioanal Nucl Chem ISSN: 0236-5731 Impact factor: 1.371
Characteristics of the IAEA SAL and IRMM-1027 LSD spikes
| Spike batch | IAEA SAL-24 | IAEA SAL-25 | IAEA SAL-26 | IRMM-1027o | IRMM-1027p | IRMM-1027q | IRMM-1027r |
|---|---|---|---|---|---|---|---|
| U sourcea | CRM 116 | CRM 112-A, CRM 116 | CRM 116 | EC NRM 101, | EC NRM 101, | EC NRM 101, | EC NRM 101, |
| Pu sourcea | MP2 | MP2 | CRM 126-A | MP2 | MP2 | MP2 | MP2 |
| Dissolution | HNO3 (conc.), HF (0.01 mol/L), heating | HNO3 (8 mol/L), traces HF, heating 60–70 °C | HCl (conc.), HNO3 (8 mol/L), heating 60–70 °C) | ||||
| Dispensing | Manual | Automated system | |||||
| Drying | 125–135 °C | 60 °C | |||||
| Coating | No coating | CAB-35b (drying 45–50 °C) | |||||
| Units prepared | 360 | 340 | 358 | 1215 | 1186 | 1126 | 1151 |
| U:Pu ratio | 7 | 18 | 5 | 30 | 29 | 29 | 29 |
| 235U enrichmentc (%) | 93 | 20 | 93 | 19 | 17 | 18 | 19 |
| 239Pu enrichmentc (%) | 98 | 98 | 97 | 98 | 98 | 98 | 98 |
| Unit size (mg) | U: 11 | U: 31 | U: 11 | U: 54 | U: 54 | U: 55 | U: 55 |
aCRM 116, CRM 116-A, CRM 112-A and CRM 126 (NBL, USA), MP2 (CEA/CETAMA, France), EC NRM 101 (JRC, Belgium)
bCAB-35: cellulose acetate butyrate with relative butyryl mass fraction of 34–39 [expressed as m(butyryl)/m(CAB)] [20]
cRelative isotope mass fraction [expressed as m(235U)/m(U) and m(239Pu)/m(Pu)]
Spikes and procedures for the analysis of the IRMM-1027 and the IAEA SAL LSD spikes
| Laboratory | IAEA-NML | JRC-Karlsruhe [ | JRC-Geel [ |
|---|---|---|---|
| U spike for IDMS |
235U (CRM 116)a
| 238U (EC-110) |
233U/242Pu (IRMM-046c)d
|
| Pu spike for IDMS |
240Pu (PR_SP3 in-house)f
| 240Pu (SM4 in-house) calibrated with MP2 |
233U/242Pu (IRMM-046c)d
|
| External QC (PT) | EQRAINj | EQRAINj | EQRAINj |
| Spiking/weighing | Single weighing | Double weighing method | Substitution weighing |
| U/Pu separation | TOPO resin: | UTEVA resin: | Anion exchange: |
| Mass spectrometer | Triton TIMS | MAT 262k
| Triton TIMS |
| Mass bias correction | Nonem | Nonen | IRMM-290/A3 for Puo
|
| Filament | Rhenium (Re) for ionisation filament | Rhenium (Re) for ionisation filament | Rhenium (Re) |
| Sample loading for TIMS | U: 500 ng, | U: 100 ng | U: 100 ng |
| Number of replicate filament measurements from a single LSD vial | 1–2 | 2 | 3–4 |
| Measurement method | Total evaporation | Total evaporation | Total evaporation |
aUsed for IAEA SAL-25, IRMM-1027o, IRMM-1027p and IRMM-1027q
bUsed for IRMM-1027r
cUsed for IAEA SAL-24, IAEA SAL-26 and IRMM-1027r
dUsed for IRMM-1027q, IAEA SAL-24, IAEA SAL-25 and IAEA SAL-26
eUsed for IRMM-1027o, IRMM-1027p, IRMM-1027q and IRMM-1027r
fUsed for IAEA SAL-24, IAEA SAL-25, IAEA SAL-26 and IRMM-1027o
gUsed for IRMM-1027p and IRMM-1027q
hUsed for IRMM-1027r
iUsed for IRMM-1027r
jEQRAIN (evaluation de la Qualité du Résultat d’Analyse dans l’Industrie Nucléaire)
kUsed for IAEA SAL-24, IAEA SAL-25, IAEA SAL-26, IRMM-1027o and IRMM-1027p
lUsed for IRMM-1027q and IRMM-1027r
mQuality control with CRM-136, CRM-137, CRM-138, CRM-112a, CRM U-500, CRM U-930
nQuality control with IRMM-199, IRMM-290F and in-house RM
oQuality control with IRMM-290/G3
pQuality control with IRMM-074/2/3
Fig. 1Results of the verification measurements for the Pu amount content in IAEA SAL-24, IAEA SAL-25 and IAEA SAL-26 expressed as the relative difference (bias) from the assigned value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the assigned value and the blue dotted lines the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 2Results of the verification measurements for the U amount content in IAEA SAL-24, IAEA SAL-25 and IAEA SAL-26 expressed as the relative difference (bias) from the assigned value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the assigned value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 3Results of the verification measurements of the n(240Pu)/n(239Pu) ratio in IAEA SAL-24, IAEA SAL-25 and IAEA SAL-26 expressed as the relative difference (bias) from the assigned value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the assigned value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 4Results of the verification measurements of the n(235U)/n(238U) ratio in IAEA SAL-24, IAEA SAL-25 and IAEA SAL-26 expressed as the relative difference (bias) from the assigned value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the assigned value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). The ITV2010 value for 235U abundance were used for the purpose of this study. (Color figure online)
Fig. 5Results of the verification measurements of the Pu amount content in IRMM-1027o, IRMM-1027p, IRMM-1027q and IRMM-1027r expressed as the relative difference (bias) from the certified value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the certified value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 6Results of the verification measurements of the U content in IRMM-1027o, IRMM-1027p, IRMM-1027q and IRMM-1027r expressed as the relative difference (bias) from the certified value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the certified value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 7Results of the verification measurements of the n(240Pu)/n(239Pu) ratio in IRMM-1027o, IRMM-1027p, IRMM-1027q and IRMM-1027r expressed as the relative difference (bias) from the certified value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the certified value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). (Color figure online)
Fig. 8Results of the verification measurements of the n(235U)/n(238U) ratio in IRMM-1027o, IRMM-1027p, IRMM-1027q and IRMM-1027r expressed as the relative difference (bias) from the certified value. Error bars show the relative expanded uncertainty of the reported measurement result. Red dotted lines show the relative expanded uncertainty (k = 2) of the certified value and the blue dotted line the respective ITV2010 value (expressed as the relative combined standard uncertainty). The ITV2010 value for 235U abundance were used for the purpose of this study. (Color figure online)