MicroRaman Measurements for Nuclear Fuel Reprocessing Applications

MicroRaman Measurements for Nuclear Fuel Reprocessing Applications
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Total Pages: 7
Release: 2016
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Treatment and reuse of used nuclear fuel is a key component in closing the nuclear fuel cycle. Solvent extraction reprocessing methods that have been developed contain various steps tailored to the separation of specific radionuclides, which are highly dependent upon solution properties. The instrumentation used to monitor these processes must be robust, require little or no maintenance, and be able to withstand harsh environments such as high radiation fields and aggressive chemical matrices. Our group has been investigating the use of optical spectroscopy for the on-line monitoring of actinides, lanthanides, and acid strength within fuel reprocessing streams. This paper will focus on the development and application of a new MicroRaman probe for on-line real-time monitoring of the U(VI)/nitrate ion/nitric acid in solutions relevant to used nuclear fuel reprocessing. Previous research has successfully demonstrated the applicability on the macroscopic scale, using sample probes requiring larger solution volumes. In an effort to minimize waste and reduce dose to personnel, we have modified this technique to allow measurement at the microfluidic scale using a Raman microprobe. Under the current sampling environment, Raman samples typically require upwards of 10 mL and larger. Using the new sampling system, we can sample volumes at 10 [mu]L or less, which is a scale reduction of over 1,000 fold in sample size. Finally, this paper will summarize our current work in this area including: comparisons between the macroscopic and microscopic probes for detection limits, optimized channel focusing, and application in a flow cell with varying levels of HNO3, and UO2(NO3)2.


MicroRaman Measurements for Nuclear Fuel Reprocessing Applications
Language: en
Pages: 7
Authors:
Categories:
Type: BOOK - Published: 2016 - Publisher:

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Treatment and reuse of used nuclear fuel is a key component in closing the nuclear fuel cycle. Solvent extraction reprocessing methods that have been developed
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Authors: Laura Jimenez Bonales
Categories:
Type: BOOK - Published: 2020-04-29 - Publisher: LAP Lambert Academic Publishing

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The control of the normal and safe performance during the operation of nuclear fuel reprocessing is one of the most important security key in the nuclear fuel r
Micro-Raman Spectroscopy
Language: en
Pages: 231
Authors: Jürgen Popp
Categories: Science
Type: BOOK - Published: 2020-02-10 - Publisher: Walter de Gruyter GmbH & Co KG

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Micro-Raman Spectroscopy introduces readers to the theory and application of Raman microscopy. Raman microscopy is used to study the chemical signature of sampl
Micro-Raman Spectroscopy of Uranium Oxyfluoride Particulate Material for Nuclear Safeguards
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Language: en
Pages:
Authors: Linda Charlotta Prinsloo
Categories:
Type: BOOK - Published: 2005 - Publisher:

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Nanomaterials' is a generic term used to describe nano-sized crystals and bulk homogenous materials with a structural disorder at the nanoscale. Ancient (and mo