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[ Author(Desc)] Title Type Year
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Gardiner JB, Capo RC, Newell DL, Stewart BW, Phan TT, Keating EH, Guthrie GD, Hakala JA. Tracking natural CO2 migration through a sandstone aquifer using Sr, U and C isotopes: Chimayó, New Mexico, USA [Internet]. International Journal of Greenhouse Gas Control 2021;104:103209.Available from: https://doi.org/10.1016/j.ijggc.2020.103209
Gardiner J, R Thomas B, Phan TT, Stuckman M, Wang J, Small M, Lopano C, J Hakala A. Utilization of produced water baseline as a groundwater monitoring tool at a CO2-EOR site in the Permian Basin, Texas, USA [Internet]. Applied Geochemistry 2020;121:104688.Available from: https://doi.org/10.1016/j.apgeochem.2020.104688
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Pfister S, Capo RC, Stewart BW, Macpherson GL, Phan TT, Gardiner JB, Diehl JR, Lopano C, Hakala JA. 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 [Internet]. Applied Geochemistry 2017;87:122-135.Available from: http://www.sciencedirect.com/science/article/pii/S0883292717303177
Phan TT, Fulton L, Ulkem J, Aiken S, Blackwell A, Walsh J, Walker P, Rezanezhad F. Lepidolite extraction solid by-product: Mitigation of thallium leaching and utilization of radiogenic strontium isotopes as a tracer [Internet]. Environmental Advances 2021;3:100035.Available from: https://doi.org/10.1016/j.envadv.2021.100035 phan_et_al_2021_envadv.pdf
Phan TT, J Hakala A, Sharma S. Application of isotopic and geochemical signals in unconventional oil and gas reservoir produced waters toward characterizing in situ geochemical fluid-shale reactions [Internet]. Science of the Total Environment 2020;714Available from: https://www.sciencedirect.com/science/article/pii/S0048969720303776 phan_et_al_2020_stoten.pdf
Phan TT, Hakala AJ, Lopano CL, Sharma S. Rare earth elements and radiogenic strontium isotopes in carbonate minerals reveal diagenetic influence in shales and limestones in the Appalachian Basin [Internet]. Chemical Geology 2019;Available from: https://doi.org/10.1016/j.chemgeo.2019.01.018 1-s2.0-S0009254119300348-main.pdf
Phan TT, Gardiner JB, Capo RC, Stewart BW. Geochemical and multi-isotopic (87Sr/86Sr, 143Nd/144Nd, 238U/235U) perspectives of sediment sources, depositional conditions, and diagenesis of the Marcellus Shale, Appalachian Basin, USA [Internet]. Geochimica et Cosmochimica Acta 2018;222:187-211.Available from: http://www.sciencedirect.com/science/article/pii/S0016703717306841
Phan TT, J. Hakala A, Bain DJ. Influence of colloids on metal concentrations and radiogenic strontium isotopes in groundwater and oil and gas-produced waters [Internet]. Applied Geochemistry 2018;95:85-96.Available from: http://www.sciencedirect.com/science/article/pii/S0883292718301343 phan_et_al._2018_colloids.pdf
Phan TT, Vankeuren ANPaukert, J. Hakala A. Role of water−rock interaction in the geochemical evolution of Marcellus Shale produced waters [Internet]. International Journal of Coal Geology 2018;(191):95-111.Available from: https://www.sciencedirect.com/science/article/pii/S0166516217306638 phan_et_al._2018_cogel.pdf
Phan TT, Capo RC, Stewart BW, Macpherson GL, Rowan EL, Hammack RW. Factors controlling Li concentration and isotopic composition in formation waters and host rocks of Marcellus Shale, Appalachian Basin [Internet]. Chemical Geology 2016;420:162-179.Available from: http://www.sciencedirect.com/science/article/pii/S0009254115300954
Phan TT, Capo RC, Stewart BW, Graney JR, Johnson JD, Sharma S, Toro J. Trace metal distribution and mobility in drill cuttings and produced waters from Marcellus Shale gas extraction: Uranium, arsenic, barium [Internet]. Applied Geochemistry 2015;60:89–103.Available from: https://www.sciencedirect.com/science/article/pii/S0883292715000207?via%3Dihub Phan_et_al._2015_Applied_Geochemistry.pdf
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Tieman ZG, Stewart BW, Capo RC, Phan TT, Lopano CL, J. Hakala A. Barium Isotopes Track the Source of Dissolved Solids inUnconventional Shale Gas Produced Water [Internet]. Environmental Science and Technology 2020;54(7):4275–4285.Available from: https://pubs.acs.org/doi/abs/10.1021/acs.est.0c00102