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Erschienen in: Hydrogeology Journal 8/2019

19.11.2019 | Paper

Spatial variability of produced-water quality and alternative-source water analysis applied to the Permian Basin, USA

verfasst von: Binod K. Chaudhary, Robert Sabie, Mark A. Engle, Pei Xu, Spencer Willman, Kenneth C. Carroll

Erschienen in: Hydrogeology Journal | Ausgabe 8/2019

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Abstract

Interest in both environmental impact and potential beneficial uses of produced water (PW) has increased with growth in unconventional oil and gas production, especially in semi-arid regions, e.g. the Permian Basin, the most productive tight-oil region in the USA. Characterization of PW compositional variability is needed to evaluate environmental impact, treatment, and reuse potential. Geochemical variability of PW from Guadalupian (Middle Permian) to Ordovician formations was statistically and geostatistically evaluated in the western half of the Permian Basin (Delaware Basin, Central Basin Platform, and Northwest Shelf) using the US Geological Survey’s Produced Waters Geochemical Database and the New Mexico Water and Infrastructure Data System. Mean total dissolved solids (TDS) of PW increased with depth in the Delaware Basin and Central Basin Platform to the Delaware and Wolfcamp formations (Guadalupian age). Mean TDS decreased with further increases in depth. In contrast, the mean salinity of PW was significantly higher within the shallow, younger formations (largest mean TDS in the Artesia Formation); TDS decreased with depth below Guadalupian age formations in the Northwest Shelf. Kriged contour maps of TDS and major ions illustrated spatial variability across the three geo-structural regions as a function of depth. The occurrence of meteoric waters in upper and deeper formations across the three regions was significant, and was attributed to Laramide Orogeny and Basin and Range extension uplifting and tilting effects and recent water flooding. These results quantify PW composition variability, and suggest that upon treatment, PW would support some uses such as onsite reuse and mining.

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Literatur
Zurück zum Zitat Blondes MS, Engle MA, Geboy NJ (2015) Advances in integrating isotopic data with compositional data analysis: applications for deep formation brine geochemistry. In: Thio-Henestrosa S, Martin-Fernandez JA (eds) Presented at CoDaWork 2015, Girona, Spain, June 2015, 7 pp Blondes MS, Engle MA, Geboy NJ (2015) Advances in integrating isotopic data with compositional data analysis: applications for deep formation brine geochemistry. In: Thio-Henestrosa S, Martin-Fernandez JA (eds) Presented at CoDaWork 2015, Girona, Spain, June 2015, 7 pp
Zurück zum Zitat Davidson NJR (2003) Groundwater and produced water quality of the Permian Basin, Southeast New Mexico. MSc, New Mexico Institute of Mining and Technology, Socorro, NM, USA Davidson NJR (2003) Groundwater and produced water quality of the Permian Basin, Southeast New Mexico. MSc, New Mexico Institute of Mining and Technology, Socorro, NM, USA
Zurück zum Zitat Dutton SF, Kim EM, Broadhead RF, Raatz WD, Breton CL, Ruppel SC, Kerans C (2005) Play analysis and leading-edge oil-reservoir development methods in the Permian Basin: increased recovery through advanced technologies. AAPG Bull 89:553–576. https://doi.org/10.1306/12070404093 CrossRef Dutton SF, Kim EM, Broadhead RF, Raatz WD, Breton CL, Ruppel SC, Kerans C (2005) Play analysis and leading-edge oil-reservoir development methods in the Permian Basin: increased recovery through advanced technologies. AAPG Bull 89:553–576. https://​doi.​org/​10.​1306/​12070404093 CrossRef
Zurück zum Zitat Egozcue JJ, Pawlowsky-Glahn V (2005) Groups of parts and their balances in compositional data analysis. Math Geosci 37:795–828 Egozcue JJ, Pawlowsky-Glahn V (2005) Groups of parts and their balances in compositional data analysis. Math Geosci 37:795–828
Zurück zum Zitat Egozcue JJ, Pawlowsky-Glahn V, Mateu-Figueras G, Barcelo-Vidal C (2003) Isometric logratio transformations for compositional data analysis. Math Geol 35:279–300CrossRef Egozcue JJ, Pawlowsky-Glahn V, Mateu-Figueras G, Barcelo-Vidal C (2003) Isometric logratio transformations for compositional data analysis. Math Geol 35:279–300CrossRef
Zurück zum Zitat Engle MA, Blondes MS (2014) Linking compositional data analysis with thermodynamic geochemical modeling: Oilfield brines from the Permian Basin, USA. J Geochem Expl 141:61–70CrossRef Engle MA, Blondes MS (2014) Linking compositional data analysis with thermodynamic geochemical modeling: Oilfield brines from the Permian Basin, USA. J Geochem Expl 141:61–70CrossRef
Zurück zum Zitat ESRI (2017) ArcGIS desktop. Release 1051, Environmental Systems Research Institute, Redlands, CA ESRI (2017) ArcGIS desktop. Release 1051, Environmental Systems Research Institute, Redlands, CA
Zurück zum Zitat Fipps G (2003) Irrigation water quality standards and salinity management. Texas A&M AgriLife Extension Service, College Station, TX Fipps G (2003) Irrigation water quality standards and salinity management. Texas A&M AgriLife Extension Service, College Station, TX
Zurück zum Zitat Galley JE (1958) Oil and geology in the Permian Basin of Texas and New Mexico: North America. In: Special Paper 18: Habitats of oil. American Association of Petroleum Geology, Tulsa, OK, pp 395-446 Galley JE (1958) Oil and geology in the Permian Basin of Texas and New Mexico: North America. In: Special Paper 18: Habitats of oil. American Association of Petroleum Geology, Tulsa, OK, pp 395-446
Zurück zum Zitat Geza M, Ma G, Kim H, Cath TY, Xu P (2018) iDST: an integrated decision support tool for treatment and beneficial use of non-traditional water supplies—part I, methodology. J Water Proc Eng 25:236–246CrossRef Geza M, Ma G, Kim H, Cath TY, Xu P (2018) iDST: an integrated decision support tool for treatment and beneficial use of non-traditional water supplies—part I, methodology. J Water Proc Eng 25:236–246CrossRef
Zurück zum Zitat Guerra K, Dahm K, Dundorf S (2011) Oil and gas produced water management and beneficial use in the Western United States. Bureau of Reclamation, Denver, CO Guerra K, Dahm K, Dundorf S (2011) Oil and gas produced water management and beneficial use in the Western United States. Bureau of Reclamation, Denver, CO
Zurück zum Zitat Jester S (2013) Cost effective reuse of produced water in the Permian Basin. Oil and Gas Environmental Conference,Dallas, TX,December, 2013 Jester S (2013) Cost effective reuse of produced water in the Permian Basin. Oil and Gas Environmental Conference,Dallas, TX,December, 2013
Zurück zum Zitat Khan NA, Engle MA, Dungan B, Holguin FO, Xu P, Carroll KC (2016) Volatile-organic molecular characterization of shale-oil produced water from the Permian Basin. Chemosphere 148:126–136CrossRef Khan NA, Engle MA, Dungan B, Holguin FO, Xu P, Carroll KC (2016) Volatile-organic molecular characterization of shale-oil produced water from the Permian Basin. Chemosphere 148:126–136CrossRef
Zurück zum Zitat Kharaka YK, Hanor JS (2014) Surface and groundwater, weathering and soils, vol 7. In: Treatise on geochemistry, 2nd edn. Elsevier, Amsterdam, pp 471–515 Kharaka YK, Hanor JS (2014) Surface and groundwater, weathering and soils, vol 7. In: Treatise on geochemistry, 2nd edn. Elsevier, Amsterdam, pp 471–515
Zurück zum Zitat Longworth JW, Valdez JM, Magnusen ML, Richard K (2013) New Mexico water use by categories 2010. Technical report 54, New Mexico Office of the State Engineer, Santa Fe, NM Longworth JW, Valdez JM, Magnusen ML, Richard K (2013) New Mexico water use by categories 2010. Technical report 54, New Mexico Office of the State Engineer, Santa Fe, NM
Zurück zum Zitat Ma G, Geza M, Cath TY, Drewes JE, Xu P (2018) iDST: an integrated decision support tool for treatment and beneficial use of non-traditional water supplies—part II, Marcellus and Barnett Shale case studies. J Water Proc Eng 25:258–268CrossRef Ma G, Geza M, Cath TY, Drewes JE, Xu P (2018) iDST: an integrated decision support tool for treatment and beneficial use of non-traditional water supplies—part II, Marcellus and Barnett Shale case studies. J Water Proc Eng 25:258–268CrossRef
Zurück zum Zitat Matchus EJ, Jones TS (1984) East–West Cross Section Through Permian Basin of West Texas. West Texas Geological Society, Publication No. 84–79, 1 sheet Matchus EJ, Jones TS (1984) East–West Cross Section Through Permian Basin of West Texas. West Texas Geological Society, Publication No. 84–79, 1 sheet
Zurück zum Zitat McNeal RP (1965) Hydrodynamics of the Permian Basin. In: Young A, Galley JE (ed) Fluids in subsurface environments. AAPG Memoir 4, AAPG, Tulsa, OK, pp 308–326 McNeal RP (1965) Hydrodynamics of the Permian Basin. In: Young A, Galley JE (ed) Fluids in subsurface environments. AAPG Memoir 4, AAPG, Tulsa, OK, pp 308–326
Zurück zum Zitat OCD (2015) The New Mexico Natural Resources report. Energy, Minerals, and Natural Resources Dept., Santa Fe, NM OCD (2015) The New Mexico Natural Resources report. Energy, Minerals, and Natural Resources Dept., Santa Fe, NM
Zurück zum Zitat Ostroff AG (1979) Introduction to oilfield water technology. National Association of Corrosion Engineers, Houston, TX Ostroff AG (1979) Introduction to oilfield water technology. National Association of Corrosion Engineers, Houston, TX
Zurück zum Zitat Pfister S, Capo RC, Stewart BW, Macpherson GL, Phan TT, Gardiner JB, Diehl JR, Lopano CL, Hakala JA (2017) Geochemical and lithium isotope tracking of dissolved solid sources in Permian Basin carbonate reservoir and overlying aquifer waters at an enhanced oil recovery site, Northwest Texas, USA. Appl Geochem 87:122–135. https://doi.org/10.1016/j.apgeochem.2017.10.013 CrossRef Pfister S, Capo RC, Stewart BW, Macpherson GL, Phan TT, Gardiner JB, Diehl JR, Lopano CL, Hakala JA (2017) Geochemical and lithium isotope tracking of dissolved solid sources in Permian Basin carbonate reservoir and overlying aquifer waters at an enhanced oil recovery site, Northwest Texas, USA. Appl Geochem 87:122–135. https://​doi.​org/​10.​1016/​j.​apgeochem.​2017.​10.​013 CrossRef
Zurück zum Zitat Siegel MD, Anderholm S (1994) Geochemical evolution of groundwater in the Culebra dolomite near the waste isolation pilot plant, southeastern New Mexico, USA. Geochim Cosmochim Acta 58:2299–2323CrossRef Siegel MD, Anderholm S (1994) Geochemical evolution of groundwater in the Culebra dolomite near the waste isolation pilot plant, southeastern New Mexico, USA. Geochim Cosmochim Acta 58:2299–2323CrossRef
Zurück zum Zitat Stanton JS, Anning DW, Brown CJ, Moore RB, McGuire VL, Qi SL, Harris AC, Dennehy KF, McMahon PB, Degnan JR, Böhlke JK (2017) Brackish groundwater in the United States. US Geol Surv Prof Pap 1833, 185 pp Stanton JS, Anning DW, Brown CJ, Moore RB, McGuire VL, Qi SL, Harris AC, Dennehy KF, McMahon PB, Degnan JR, Böhlke JK (2017) Brackish groundwater in the United States. US Geol Surv Prof Pap 1833, 185 pp
Zurück zum Zitat Stanton JS, Dennehy KF (2017) Brackish groundwater and its potential to augment freshwater supplies. US Geol Surv Fact Sheet 2017–3054:4 Stanton JS, Dennehy KF (2017) Brackish groundwater and its potential to augment freshwater supplies. US Geol Surv Fact Sheet 2017–3054:4
Zurück zum Zitat Veil J, Puder M, Elcock D, Redweik Jr. R (2004) A white paper describing produced water from production of crude oil, natural gas, and coal bed methane. National Energy Technology Laboratory, Pittsburgh, PA Veil J, Puder M, Elcock D, Redweik Jr. R (2004) A white paper describing produced water from production of crude oil, natural gas, and coal bed methane. National Energy Technology Laboratory, Pittsburgh, PA
Zurück zum Zitat Willet JC (2004) Potash. US Geological Survey minerals yearbook. US Geological Survey, Reston, VA Willet JC (2004) Potash. US Geological Survey minerals yearbook. US Geological Survey, Reston, VA
Zurück zum Zitat Xu P, Ma G, Stoll Z (2016) Assessment of treatment technologies for produced water to improve water supply sustainability in southeastern New Mexico. New Mexico Water Resources Research Institute, Las Cruces, NM Xu P, Ma G, Stoll Z (2016) Assessment of treatment technologies for produced water to improve water supply sustainability in southeastern New Mexico. New Mexico Water Resources Research Institute, Las Cruces, NM
Metadaten
Titel
Spatial variability of produced-water quality and alternative-source water analysis applied to the Permian Basin, USA
verfasst von
Binod K. Chaudhary
Robert Sabie
Mark A. Engle
Pei Xu
Spencer Willman
Kenneth C. Carroll
Publikationsdatum
19.11.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
Hydrogeology Journal / Ausgabe 8/2019
Print ISSN: 1431-2174
Elektronische ISSN: 1435-0157
DOI
https://doi.org/10.1007/s10040-019-02054-4

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