Development and testing of a novel micro-Raman probe and application of calibration method for the quantitative analysis of microfluidic nitric acid streams
Author:
Affiliation:
1. Department of Chemistry
2. College of Idaho
3. Caldwell
4. USA
5. Energy and Environment Directorate
6. Pacific Northwest National Laboratory
7. Richland
8. Spectra Solutions
9. Inc.
10. Norwood
Abstract
To simplify and improve the safety of reprocessing nuclear fuel, the Micro-Raman technique was applied at the microfluidic scale with a view toward the on-line spectroscopic measurement of radioactive solutions.
Funder
U.S. Department of Energy
Publisher
Royal Society of Chemistry (RSC)
Subject
Electrochemistry,Spectroscopy,Environmental Chemistry,Biochemistry,Analytical Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2018/AN/C7AN01761H
Reference45 articles.
1. K. L. Nash and J. C.Braley , in Advanced Separation Techniques for Nuclear Fuel Reprocessing and Radioactive Waste Treatment , ed. K. L. Nash and G. J. Lumetta , Woodhead Publishing , 2011, pp. 95–119., Cambridge, UK , 2011 , ch. 1, pp. 1–22
2. Raman spectrometric studies of actinide(V) and -(VI) complexes in aqueous sodium carbonate solution and of solid sodium actinide(V) carbonate compounds
3. Spectroscopic monitoring of spent nuclear fuel reprocessing streams: an evaluation of spent fuel solutionsviaRaman, visible, and near-infrared spectroscopy
4. Effect of pH and monovalent cations on the Raman spectrum of water: Basics revisited and application to measure concentration gradients at water/solid interface in Si3N4 biomaterial
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