Published 2020 | Version v1
Book

Infrared spectroscopic method for uranium isotopic analysis

  • 1. Savannah River National Lab. (United States)
  • 2. Oak Ridge National Lab. (United States)
  • 3. Clemson Univ. (United States)
  • 4. Bechtel National Inc. (United States)

Description

A high performance infrared (HPIR) system was developed and demonstrated for the infrared absorption analysis of 235U and 238U isotopes in uranium hexafluoride gas samples. Sweeping the quantum cascade laser light source over the spectral range and sampling via a high-rate analog-to-digital converter provided 0.0005 cm-1 spectral resolution, which allowed for high-precision measurements of the isotopic peak shift. A data analysis method was developed using principal component analysis to predict the isotope weight % content of 235U. The HPIR precision, accuracy, and error were evaluated for a wide range of isotopic ratio samples (0.287 – 93.7 weight % 235U), and the results were compared to the International Target Values (ITVS) set forth by the International Atomic Energy Agency (IAEA) for non-destructive and destructive analytical techniques. The method meets or surpasses the IAEA ITVs for non-destructive analysis of samples with isotopic content of depleted to highly enriched. The results also demonstrated the capability of the HPIR system to correctly predict the 235U weight % content of a mislabeled sample whose isotopic distribution was validated by mass spectroscopic measurements. The HPIR measurement is nondestructive and, thus, allows for confirmatory analyses of the exact sample at a designated IAEA lab if higher-resolution or a certified analysis is needed. (author)

Availability note (English)

Available from: https://www.spiedigitallibrary.org/conference-proceedings-of-spie/11416/2559314/Infrared-spectroscopic-method-for-uranium-isotopic-analysis/10.1117/12.2559314.short
Part of:
Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing XXI

Additional details

Publishing Information

Publisher
SPIE
Imprint Place
Bellingham, WA (United States)
ISBN
978-1-5106-3610-1
Imprint Title
Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing XXI
Imprint Pagination
vp.
Journal Volume
11416
Series
Proceedings of SPIE
Journal Page Range
vp.
ISSN
1996-756X

Conference

Title
21. SPIE Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing Conference
Dates
27 Apr - 3 May 2020
Place
California (United States)

Optional Information

Notes
14 refs.