Produced water geochemistry from hydraulically stimulated Niobrara Formation petroleum wells: Origin of salinity and temporal perspectives on treatment and reuse
October 18, 2024
Produced water (i.e., a mixture of returned injection fluids and geologic formation brines) represents the largest volumetric waste stream associated with petroleum production in the United States. As such, produced water has been the focus of intense study with emphasis on understanding the geologic origin of the fluids, environmental impacts of unintended or intentional release, disposal concerns, and their commodity (e.g., lithium) potential. However, produced water geochemistry from many active petroleum plays remain poorly constrained leading to knowledge gaps associated with the origin of brine salinity and parameters (e.g., radium levels) that can impact treatment, disposal, and possible reuse. Here we evaluate the major ion geochemistry, radium concentrations, and stable water isotope composition of ~120 produced water samples collected from 17 producing unconventional petroleum wells in Weld County, Colorado from the Late Cretaceous Niobrara Formation. This sample set encompasses eight produced water time series from four new wells across production days 0 to ~365 and from four established wells across production days ~1000 to ~1700. Additionally, produced water from nine other established Niobrara Formation wells were sampled at discrete time points ranging from day 458 to day 2256, as well as hydraulic fracturing input fluids. These results expand the available Niobrara Formation produced water geochemical data, previously limited to few wells sampled within the first year of production, allowing for the heterogeneity of major ions and radium to be evaluated. Furthermore, we explore the geochemical relationships between major ion ratios and stable water isotope composition to understand the origin of salinity in Niobrara Formation brines from the Denver-Julesburg Basin. These findings are discussed with perspective toward potential treatment and reuse of Niobrara produced water prior to disposal.
Citation Information
Publication Year | 2024 |
---|---|
Title | Produced water geochemistry from hydraulically stimulated Niobrara Formation petroleum wells: Origin of salinity and temporal perspectives on treatment and reuse |
DOI | 10.1016/j.scitotenv.2024.176845 |
Authors | Aaron M. Jubb, Jenna L. Shelton, Bonnie McDevitt, Kaela K. Amundson, Amanda Sha Herzberg, Jessica Chenault, Andrew Laurence Masterson, Matthew S. Varonka, Glenn D. Jolly, Christina A. DeVera, Elliott Barnhart, Michael J. Wilkins, Madalyn S. Blondes |
Publication Type | Article |
Publication Subtype | Journal Article |
Series Title | Science of the Total Environment |
Index ID | 70259702 |
Record Source | USGS Publications Warehouse |
USGS Organization | Eastern Energy Resources Science Center; Geology, Energy & Minerals Science Center |
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Jenna L Shelton, Ph.D.
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Bonnie McDevitt
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Jessica M. Chenault
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Andrew L. Masterson, Ph.D.
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Matthew S. Varonka, Ph.D.
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Glenn D. Jolly
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Christina A. DeVera
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Elliott Barnhart
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Madalyn S. Blondes, Ph.D.
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Jenna L Shelton, Ph.D.
Deputy Program Coordinator and Senior Program Scientist for STATEMAP
Deputy Program Coordinator and Senior Program Scientist for STATEMAP
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Bonnie McDevitt
Research Engineer
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Jessica M. Chenault
Chemist, Laboratory Manager
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Andrew L. Masterson, Ph.D.
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Matthew S. Varonka, Ph.D.
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Glenn D. Jolly
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Christina A. DeVera
Physical Scientist
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Elliott Barnhart
Research Hydrologist (Microbiologist)
Research Hydrologist (Microbiologist)
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Madalyn S. Blondes, Ph.D.
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