Journal of Analytical Sciences, Methods and Instrumentation

Volume 1, Issue 2 (December 2011)

ISSN Print: 2164-2745   ISSN Online: 2164-2753

Google-based Impact Factor: 0.42  Citations  

Determination of Di-n-Butyl Phosphate in Organic Streams of FBTR Mixed Carbide Fuel Reprocessing Solution by Gas Chromatographic Technique

HTML  Download Download as PDF (Size: 268KB)  PP. 31-35  
DOI: 10.4236/jasmi.2011.12005    5,864 Downloads   13,429 Views  Citations

Affiliation(s)

.

ABSTRACT

The present work describes the amount of Di-n- butyl phosphate (DBP) produced when PUREX solvent (30%tri-n-butyl phosphate (TBP) mixed with 70% hydrocarbon diluent) is exposed to intensive radiolytic and chemical at- tack during the separation of uranium and plutonium from fission products of FBTR mixed carbide fuel reprocessing solution. DBP is the major degradation product of Tri-n-butyl phosphate (TBP). Amount of DBP formed in the lean organic streams of different fuel burn-up FBTR carbide fuel reprocessing solutions were analyzed by Gas Chromatographic technique. The method is based on the preparation of diazo methane and conversion of non-volatile Di-n-butyl phosphate in to volatile and stable derivatives by the action of diazomethane and then determined by Gas Chromatography (GC). A calibration graph was made for DBP over a concentration in the range from 200 to 1800 ppm with correlation coefficient of 0.99587 and RSD 1.2%. The degraded 30% TBP-NPH solvent loaded with heavy metal ions like uranium was analyzed after repeated use and results are compared with standard ion chromatographic technique. A column comparison study to select of proper gas chromatographic column for the separation of DBP from other components in a single aliquot of injection is also examined.

Share and Cite:

P. Velavendan, S. Ganesh, N. Pandey, U. Kamachi Mudali and R. Natarajan, "Determination of Di-n-Butyl Phosphate in Organic Streams of FBTR Mixed Carbide Fuel Reprocessing Solution by Gas Chromatographic Technique," Journal of Analytical Sciences, Methods and Instrumentation, Vol. 1 No. 2, 2011, pp. 31-35. doi: 10.4236/jasmi.2011.12005.

Cited by

[1] Review of on-line and near real-time spectroscopic monitoring of processes relevant to nuclear material management
2020
[2] Influence of irradiation on the structure and thermo-kinetic behavior of tri-n-butyl phosphate
Journal of Thermal Analysis and Calorimetry, 2016
[3] Characterization of Tributyl Degradation Using FTIR-ATR Spectroscopy and Carbon Stable Isotope Ratio Mass Spectrometry
2016
[4] Characterization of tributyl phosphate degradation using FTIR-ATR spectroscopy and carbon stable isotope ratio mass spectrometry
ProQuest Dissertations Publishing, 2016
[5] Fourier Transform Infrared Spectroscopy and Multivariate Analysis for Online Monitoring of Dibutyl Phosphate Degradation Product in Tributyl Phosphate/n-Dodecane …
Industrial & Engineering Chemistry, 2013
[6] Fourier Transform Infrared Spectroscopy and Multivariate Analysis for Online Monitoring of Dibutyl Phosphate Degradation Product in Tributyl Phosphate/n-Dodecane/Nitric Acid Solvent
Industrial & Engineering Chemistry Research?, 2013
[7] Extraction Behavior of Europium Relevant to PUREX Process

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.