Université de Sherbrooke
Comparison of the Effects of Cobalt-60 [gamma]-Rays and Tritium [beta][superscript -]Particles on Water Radiolysis and Aqueous Solutions and Radiolysis of the Ceric-Cerous Sulfate Dosimeter at Elevated Temperature
Abstract
dc:description.abstractMonte Carlo simulations have proven to be very powerful techniques to study the radiolysis of water and the mechanisms underlying this radiolysis. Monte Carlo simulations particularly become important when there are no experimental results available in the literature due, for instance, to the difficulty of performing such experiments. This thesis presents a study of the radiolysis of water irradiated by different types of radiation and at various temperatures, employing Monte Carlo simulations. The first part of the thesis uses Monte Carlo simulations to elucidate the mechanisms involved in the self-radiolysis of tritiated water and to examine the importance of the effects of higher “linear energy transfer” (LET) by comparing [[superscript 3]H [beta][superscript -] radiations (mean initial energy of ~5.7 keV) with [superscript 60]Co [gamma]-rays (~1 MeV electrons). Our simulations showed that, for [superscript 3]H [beta][superscript -], we observe lower radical and higher molecular yields than in γ-radiolysis. These differences in yields are consistent with differences in the nonhomogeneous distribution of primary transient species in the two cases. Overall, our results corroborate well with previously reported work, and support a picture of [superscript 3]H [beta][superscript -] radiolysis mainly driven by the chemical action of “short tracks” of high local LET. This same trend in yields of radical and molecular products was also found under acidic conditions as well as in the aerated Fricke dosimeter. One of our main findings was that the measured Fricke yield G(Fe[superscript 3+]) could be best reproduced if a single, mean “equivalent” electron energy of ~7.8 keV were used to mimic the energy deposition by the tritium [beta][superscript -] particles (rather than the commonly used mean of ~5.7 keV), in full agreement with a previous recommendation of ICRU Report 17. The second part of this thesis investigates the radiolysis of the ceric-cerous sulfate dosimeter at elevated temperatures. In this radiolysis, H[superscript •] (or HO[subscript 2][superscript •] in the presence of oxygen) and H[subscript 2]O[subscript 2] produced by the radiolytic decomposition of water both reduce Ce[superscript 4+] ions to Ce[superscript 3+] ions, while [superscript •]OH radicals oxidize the Ce[superscript 3+] present back to Ce[superscript 4+]. Our simulations showed that the net Ce[superscript 3+] yield decreases almost linearly with increasing temperature up to ~250 °C, in excellent agreement with experiment. Above 250 °C, our model predicts that G(Ce[superscript 3+]) drops markedly with temperature until, instead of Ce[superscript 4+] reduction, Ce[superscript 3+] oxidation is observed. This drop is shown to result from the occurrence of the reaction of H[superscript •] atoms with water in the homogeneous chemical stage.
Degree
thesis:*- Name thesis:degree_name
- M. Sc.
- Level thesis:degree_level
- Maîtrise
- Discipline thesis:degree_discipline
- Sciences des radiations et imagerie biomédicale
- Grantor dc:publisher
- Université de Sherbrooke
- Year dc:date.issued
- 2014
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Mirsaleh Kohan, Leila
- Advisor dc:contributor.advisor
-
- Jay-Gerin, Jean-Paul
Subjects
dc:subject × 20- Radiolysis of water
- Monte Carlo simulation
- Tritiated water
- G-values
- Free radical and molecular yields
- LET
- Fricke dosimeter
- Ceric-cerous sulfate dosimeter
- Track structure
- [superscript 3]H [béta Minuscule][superscript -] rays
- [superscript 60]Co [gamma Minuscule]-rays
- Radiolyse de l'eau
- Simulation Monte-Carlo
- Eau tritiée
- Particules [béta Minuscule][indice supérieur -] de [indice supérieur 3]H
- Rayons [gamma Minuscule] de [indice supérieur 60]Co
- Radicaux libres et produits moléculaires
- Dosimètre de Fricke
- Dosimètre au sulfate cérique-céreux
- Structure de trajectoires
Rights
- Licence dc:rights.uri
- Language dc:language.iso
- en
Identifiers
dc:identifier.*- Handle dc:identifier.uri
- https://hdl.handle.net/11143/168
- OAI identifier oai:identifier
- oai:usherbrooke.scholaris.ca:11143/168