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Title: Solvent Radiolysis Product Production using Preparative Chromatography

Abstract

Enable a quantitative understanding of effects of radiation during used nuclear fuel separations Critical for modeling separation performance Accelerate development of more robust, lower cost fuel cycles by enabling a fundamental understanding of the effects of radiation on organic molecules Cheaper and more efficient separation methods

Authors:
 [1]
  1. Idaho National Laboratory
Publication Date:
Research Org.:
Idaho National Lab. (INL), Idaho Falls, ID (United States)
Sponsoring Org.:
USDOE Advanced Research Projects Agency - Energy (ARPA-E)
OSTI Identifier:
1546723
Report Number(s):
INL/EXP-19-55078-Rev000
DOE Contract Number:  
AC07-05ID14517
Resource Type:
S&T Accomplishment Report
Country of Publication:
United States
Language:
English
Subject:
38 - RADIATION CHEMISTRY, RADIOCHEMISTRY, AND NUCLEAR CHEMISTRY; Liquid Chromatography; Fuel Cycle Separation; Mass Spectrometer

Citation Formats

Rigg, Kyle Wesley. Solvent Radiolysis Product Production using Preparative Chromatography. United States: N. p., 2019. Web. doi:10.2172/1546723.
Rigg, Kyle Wesley. Solvent Radiolysis Product Production using Preparative Chromatography. United States. doi:10.2172/1546723.
Rigg, Kyle Wesley. Thu . "Solvent Radiolysis Product Production using Preparative Chromatography". United States. doi:10.2172/1546723. https://www.osti.gov/servlets/purl/1546723.
@article{osti_1546723,
title = {Solvent Radiolysis Product Production using Preparative Chromatography},
author = {Rigg, Kyle Wesley},
abstractNote = {Enable a quantitative understanding of effects of radiation during used nuclear fuel separations Critical for modeling separation performance Accelerate development of more robust, lower cost fuel cycles by enabling a fundamental understanding of the effects of radiation on organic molecules Cheaper and more efficient separation methods},
doi = {10.2172/1546723},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2019},
month = {8}
}