Advances in distinguishing groundwater influenced by Oil Sands Process-Affected Water (OSPW) from natural bitumen-influenced groundwaters
- Download(s)
- DOI
- Language of the publication
- English
- Date
- 2020-01-06
- Type
- Article
- Author(s)
- Hewitt, L. Mark
- Roy, James W.
- Rowland, Steve J.
- Bickerton, Greg
- DeSilva, Amila
- Headley, John V.
- Milestone, Craig B.
- Scarlett, Alan G.
- Brown, Susan
- Spencer, Christine
- West, Charles E.
- Peru, Kerry M.
- Grapentine, Lee
- Ahad, Jason M.E.
- Pakdel, Hooshang
- Frank, Richard A.
- Publisher
- American Chemical Society
Abstract
The objective of this study was to advance analytical methods for detecting oil sands process-affected water (OSPW) seepage from mining containments and discriminating any such seepage from the natural bitumen background in groundwaters influenced by the Alberta McMurray formation. Improved sampling methods and quantitative analyses of two groups of monoaromatic acids were employed to analyze OSPW and bitumen-affected natural background groundwaters for source discrimination. Both groups of monoaromatic acids showed significant enrichment in OSPW, while ratios of O2/O4 containing heteroatomic ion classes of acid extractable organics (AEOs) did not exhibit diagnostic differences. Evaluating the monoaromatic acids to track a known plume of OSPW-affected groundwater confirmed their diagnostic abilities. A secondary objective was to assess anthropogenically derived artificial sweeteners and per- and polyfluoroalkyl substances (PFAS) as potential tracers for OSPW. Despite the discovery of acesulfame and PFAS in most OSPW samples, trace levels in groundwaters influenced by general anthropogenic activities preclude them as individual robust tracers. However, their inclusion with the other metrics employed in this study served to augment the tiered, weight of evidence methodology developed. This methodology was then used to confirm earlier findings of OSPW migrations into groundwater reaching the Athabasca River system adjacent to the reclaimed pond at Tar Island Dyke.
Description
Subject to American Chemical Society’s ACS AuthorChoice License.
Subject
- Groundwater,
- Oil sands,
- Mining industry,
- Rivers
Rights
Pagination
1522−1532
Peer review
Yes
Open access level
Gold
Identifiers
- ISSN
-
0013-936X
- 1520-5851
Article
- Journal title
- Environmental Science & Technology
- Journal volume
- 54
- Journal issue
- 3
- Accepted date
- 2020-01-06
- Submitted date
- 2019-08-21