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HERO ID
4697412
Reference Type
Journal Article
Title
Determination of boron concentration in uranium fuel samples by ICP-OES following a separation step by cation exchange resin
Author(s)
Luo, Yan; Cong, HaiXia; Cui, RR; Cao, CQ; Zhou, Wei; Zhao, ZQi
Year
2018
Is Peer Reviewed?
1
Journal
Nuclear Science and Techniques
ISSN:
1001-8042
Volume
29
Issue
3
DOI
10.1007/s41365-018-0374-4
Web of Science Id
WOS:000428976900014
Abstract
The boron content of uranium fuel samples with boron concentrations in the range of 0.05-10 mu g/g was determined using inductively coupled plasma optical emission spectrometry (ICP-OES) after the uranium was separated by cation exchange. The samples were dissolved in 3 M HNO3 on a hot plate at 150 degrees C and evaporated to near dryness. The residues were redissolved in 0.2 M HNO3 and passed through a column loaded with Dowex 50WX8-400 resin. Uranium was adsorbed on the resin, while boron was easily eluted with 0.2 M HNO3. The boron content of the effluent was determined using ICP-OES. Several strategies were employed to improve the reliability of the experimentally determined boron content. The addition of mannitol and proper control of the evaporation process were shown to be effective in preventing boron loss during sample dissolution and evaporation. The memory effect was eliminated by flushing the system with 1.5% ammonia for 30 s between successive sample runs, and the matrix match method was used to eliminate the matrix effect arising from mannitol during the ICP-OES analysis. The accuracy of the results of the analysis was determined by addition recovery tests and by comparison with the results of three Chinese certified reference materials (GBW04242, GBW04243, and GBW04232). Using the method we developed, the limit of detection for boron was as low as 0.05 mu g/g in uranium fuel samples, and the relative standard deviations for 0.1-0.5 g uranium samples with 0.05-2 mu g/g of boron were within 9%.
Keywords
Boron determination; ICP-OES; Boron evaporation; Memory effect; Matrix match method; Resin separation
Tags
•
Uranium
Uranium Literature Search Update 7/2018
WOS
Uranium Literature Search Update 4/2020
WOS
•
Uranium Toxicological Review
Date limited literature search 2011-2021
New to this search
WOS
Exposure Criteria by Research Topic
Comparison of measures among tissues
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