Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada
<p>Four techniques for obtaining δ<sup>18</sup>O and δ<sup>2</sup>H values in clay-rich geologic media were compared and evaluated. The results of this evaluation were then applied to a hydrogeologic investigation of a complex clay-rich aquitard system. The four techn...
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ndltd-USASK-oai-usask.ca-etd-07202012-1340512013-01-08T16:35:34Z Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada Kelln, Christopher James <p>Four techniques for obtaining δ<sup>18</sup>O and δ<sup>2</sup>H values in clay-rich geologic media were compared and evaluated. The results of this evaluation were then applied to a hydrogeologic investigation of a complex clay-rich aquitard system. The four techniques included mechanical squeezing, centrifugation, azeotropic distillation, and a direct soil-water equilibration technique. Direct CO<sub>2</sub>-core equilibration yielded sufficiently accurate and reproducible δ<sup>18</sup>O results of pore water in clay-rich tills. Mechanical squeezing and centrifugation produced results similar to direct equilibration. Azeotropic distillation produced a high level of discrepancy in δ<sup>18</sup>O and δ<sup>2</sup>H results compared to the other methods. The results of this study suggested that direct equilibration is the best method for determining detailed δ<sup>2</sup>H and δ<sup>18</sup>O values of pore water in clay-rich aquitard systems.</p> <p>The aquitard system investigated in this study consisted of a thick Quaternary till overlying an intertill aquifer. A detailed vertical profile of pore water δ<sup>18</sup>O through the aquitard suggested that the till unit was divisible into three distinct hydrogeochemical zones: an upper zone (0 - 10.5 m), an intermediate (10.5 - 30m) zone, and a lower zone (30 - 62.5 m). A comparison of laboratory and field hydraulic conductivity (K) values suggested that the K in the upper 30 m of till is higher than the underlying till due to a system of interconnected fractures and sand layers. In contrast, results suggested that the lower zone (35 - 62.5 m) was not fractured but contained sand lenses or streaks. Results of K measurements supported the presence of three distinct zones suggested by the δ<sup>18</sup>O data. Bulk K was estimated to range from 3.2x10<sup>-9</sup> to 3.4x10<sup>-8</sup> m/s and 1x10<sup>-11</sup> to 1x10<sup>-10</sup> m/s in the upper/intermediate and lower zone, respectively. Measured values of hydraulic head in the aquitard supported the contention that the lower zone had a significantly lower K than the overlying till. Although K in the upper and intermediate zones is high, these data suggest that active groundwater flow is limited to shallow localised zones. This investigation also shows that a three-dimensional study of groundwater flow at the site is warranted.</p> <p>Note:</p><p>Page 61 is missing.</p> Hendry, Jim University of Saskatchewan 2012-07-20 text application/pdf http://library.usask.ca/theses/available/etd-07202012-134051/ http://library.usask.ca/theses/available/etd-07202012-134051/ en unrestricted I hereby certify that, if appropriate, I have obtained and attached hereto a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dissertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to University of Saskatchewan or its agents the non-exclusive license to archive and make accessible, under the conditions specified below, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report. |
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<p>Four techniques for obtaining δ<sup>18</sup>O and δ<sup>2</sup>H values in clay-rich geologic media were
compared and evaluated. The results of this evaluation were then applied to a hydrogeologic
investigation of a complex clay-rich aquitard system. The four techniques included mechanical
squeezing, centrifugation, azeotropic distillation, and a direct soil-water equilibration technique.
Direct CO<sub>2</sub>-core equilibration yielded sufficiently accurate and reproducible δ<sup>18</sup>O results of pore
water in clay-rich tills. Mechanical squeezing and centrifugation produced results similar to
direct equilibration. Azeotropic distillation produced a high level of discrepancy in δ<sup>18</sup>O and
δ<sup>2</sup>H results compared to the other methods. The results of this study suggested that direct
equilibration is the best method for determining detailed δ<sup>2</sup>H and δ<sup>18</sup>O values of pore water in
clay-rich aquitard systems.</p>
<p>The aquitard system investigated in this study consisted of a thick Quaternary till
overlying an intertill aquifer. A detailed vertical profile of pore water δ<sup>18</sup>O through the aquitard
suggested that the till unit was divisible into three distinct hydrogeochemical zones: an upper
zone (0 - 10.5 m), an intermediate (10.5 - 30m) zone, and a lower zone (30 - 62.5 m). A
comparison of laboratory and field hydraulic conductivity (K) values suggested that the K in the
upper 30 m of till is higher than the underlying till due to a system of interconnected fractures
and sand layers. In contrast, results suggested that the lower zone (35 - 62.5 m) was not
fractured but contained sand lenses or streaks. Results of K measurements supported the
presence of three distinct zones suggested by the δ<sup>18</sup>O data. Bulk K was estimated to range
from 3.2x10<sup>-9</sup> to 3.4x10<sup>-8</sup> m/s and 1x10<sup>-11</sup> to 1x10<sup>-10</sup> m/s in the upper/intermediate and lower
zone, respectively. Measured values of hydraulic head in the aquitard supported the contention
that the lower zone had a significantly lower K than the overlying till. Although K in the upper
and intermediate zones is high, these data suggest that active groundwater flow is limited to
shallow localised zones. This investigation also shows that a three-dimensional study of
groundwater flow at the site is warranted.</p>
<p>Note:</p><p>Page 61 is missing.</p> |
author2 |
Hendry, Jim |
author_facet |
Hendry, Jim Kelln, Christopher James |
author |
Kelln, Christopher James |
spellingShingle |
Kelln, Christopher James Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
author_sort |
Kelln, Christopher James |
title |
Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
title_short |
Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
title_full |
Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
title_fullStr |
Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
title_full_unstemmed |
Determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, Saskatchewan, Canada |
title_sort |
determination of detailed stable isotope profiles and hydrogeologic conditions in a complex clay-rich aquitard, saskatchewan, canada |
publisher |
University of Saskatchewan |
publishDate |
2012 |
url |
http://library.usask.ca/theses/available/etd-07202012-134051/ |
work_keys_str_mv |
AT kellnchristopherjames determinationofdetailedstableisotopeprofilesandhydrogeologicconditionsinacomplexclayrichaquitardsaskatchewancanada |
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