Experimental and modeling study of CO2 solubility in formation brines at in-situ conditions
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Zuhao Kou | Zemin Ji | Weifeng Lv | Heng Wang | Mingyuan Wang | Shouchuan Wang | Chang He | Lei Wang
[1] Dongyang Cao. Investigation into surface-coated continuous flax fiber-reinforced natural sandwich composites via vacuum-assisted material extrusion , 2023, Progress in Additive Manufacturing.
[2] Dongyang Cao. Fusion joining of thermoplastic composites with a carbon fabric heating element modified by multiwalled carbon nanotube sheets , 2023, The International Journal of Advanced Manufacturing Technology.
[3] D. Griffith,et al. Bending and shear improvements in 3D-printed core sandwich composites through modification of resin uptake in the skin/core interphase region , 2023, Composites Part B: Engineering.
[4] Sisi Zhao,et al. Proof of concept: solid base LDH-catalyzed ultrafast and efficient CO2 absorption into a tertiary amine solution , 2023, Chemical Engineering Science.
[5] Xiaowen Zhang,et al. One-step synthesis of efficient manganese-based oxide catalyst for ultra-rapid CO2 absorption in MDEA solutions , 2023, Chemical Engineering Journal.
[6] Z. Jiao,et al. Investigation of enhanced CO2 storage in deep saline aquifers by WAG and brine extraction in the Minnelusa sandstone, Wyoming , 2022, Energy.
[7] Rui Zhang,et al. SnO2/ATP catalyst enabling energy-efficient and green amine-based CO2 capture , 2022, Chemical Engineering Journal.
[8] Xinwei Yue,et al. Attapulgite as a cost-effective catalyst for low-energy consumption amine-based CO2 capture , 2022, Separation and Purification Technology.
[9] N. Rosli,et al. Measurement of Solubility of CO2 in NaCl, CaCl2, MgCl2 and MgCl2 + CaCl2 Brines at Temperatures from 298 to 373 K and Pressures up to 20 MPa Using the Potentiometric Titration Method , 2021, Energies.
[10] D. Grana,et al. Effect of CO2-brine-rock reactions on pore architecture and permeability in dolostone: Implications for CO2 storage and EOR , 2021 .
[11] Xiaohui Sun,et al. Modelling of the Phase-Partitioning Behaviors for CO2-Brine System at Geological Conditions , 2021, Lithosphere.
[12] G. Sadowski,et al. Modeling the CO2 Solubility in Aqueous Electrolyte Solutions Using ePC-SAFT , 2020 .
[13] Shuyu Sun,et al. Thermodynamic modeling of CO2 solubility in saline water using NVT flash with the cubic-Plus-association equation of state , 2020 .
[14] J. Kaszuba,et al. Link Between CO2‐Induced Wettability and Pore Architecture Alteration , 2020, Geophysical Research Letters.
[15] S. Blumsack,et al. A real options approach to production and injection timing under uncertainty for CO2 sequestration in depleted shale gas reservoirs , 2020 .
[16] Xiaochun Li,et al. Geochemistry in geologic CO2 utilization and storage: A brief review , 2019, Advances in Geo-Energy Research.
[17] D. Novikov. Genetic classification of subsurface waters and brines of Arctic regions of Siberia , 2018, IOP Conference Series: Earth and Environmental Science.
[18] Xin Li,et al. CO2 injection for geothermal development associated with EGR and geological storage in depleted high-temperature gas reservoirs , 2017 .
[19] E. Oelkers,et al. Convective mixing fingers and chemistry interaction in carbon storage , 2017 .
[20] E. Gaucher,et al. Experimental Measurement of CO2 Solubility in Aqueous NaCl Solution at Temperature from 323.15 to 423.15 K and Pressure of up to 20 MPa , 2016 .
[21] M. Wheeler,et al. Modeling Impact of Aqueous Ions on solubility of CO 2 and its Implications for Sequestration , 2016 .
[22] B. Saylor,et al. CO2 solubility in multi-component brines containing NaCl, KCl, CaCl2 and MgCl2 at 297 K and 1–14 MPa , 2016 .
[23] Huirong Guo,et al. Quantitative Raman Spectroscopic Measurements of CO2 Solubility in NaCl Solution from (273.15 to 473.15) K at p = (10.0, 20.0, 30.0, and 40.0) MPa , 2016 .
[24] M. Celia,et al. Status of CO2storage in deep saline aquifers with emphasis on modeling approaches and practical simulations: STATUS OF CO2STORAGE IN DEEP SALINE AQUIFERS , 2015 .
[25] S. Lvov,et al. Experimental studies and modeling of CO2 solubility in high temperature aqueous CaCl2, MgCl2, Na2SO4, and KCl solutions , 2015 .
[26] Xiaoqiang Bian,et al. Measurement and prediction model of carbon dioxide solubility in aqueous solutions containing bicarbonate anion , 2015 .
[27] S. Lvov,et al. Measurement and modeling of CO₂ solubility in natural and synthetic formation brines for CO₂ sequestration. , 2015, Environmental science & technology.
[28] S. Lvov,et al. Carbon dioxide solubility in aqueous solutions of sodium chloride at geological conditions: Experimental results at 323.15, 373.15, and 423.15 K and 150 bar and modeling up to 573.15 K and 2000 bar , 2015 .
[29] Danlu Tong,et al. Solubility of CO2 in Aqueous Solutions of CaCl2 or MgCl2 and in a Synthetic Formation Brine at Temperatures up to 423 K and Pressures up to 40 MPa , 2013 .
[30] Chih-Hung Huang,et al. A Review of CO2 Capture by Absorption and Adsorption , 2012 .
[31] Shengli Huang,et al. Measurement and modeling of CO2 solubility in NaCl brine and CO2–saturated NaCl brine density , 2011 .
[32] B. Han,et al. Solubility of CO2 in aqueous solutions of NaCl, KCl, CaCl2 and their mixed salts at different temperatures and pressures , 2011 .
[33] Tao Qi,et al. Measurement and Correlation of Solubility Data for CO2 in NaHCO3 Aqueous Solution , 2011 .
[34] K. Pruess,et al. A Phase-Partitioning Model for CO2–Brine Mixtures at Elevated Temperatures and Pressures: Application to CO2-Enhanced Geothermal Systems , 2010 .
[35] J. Fages,et al. Cocoa Butter Saturated with Supercritical Carbon Dioxide: Measurements and Modelling of Solubility, Volumetric Expansion, Density and Viscosity , 2010 .
[36] M. Blunt,et al. Impact of relative permeability hysteresis on geological CO2storage: IMPACT OF HYSTERESIS ON GEOLOGICAL CO2STORAGE , 2006 .
[37] Mingzhe Dong,et al. CO2 sequestration in depleted oil and gas reservoirs—caprock characterization and storage capacity , 2006 .
[38] Zhenhao Duan,et al. An improved model for the calculation of CO2 solubility in aqueous solutions containing Na+, K+, Ca2+, Mg2+, Cl−, and SO42− , 2006 .
[39] María José Cocero,et al. The influence of Na2SO4 on the CO2 solubility in water at high pressure , 2005 .
[40] André Faaij,et al. Identification of early opportunities for CO2 sequestration—worldwide screening for CO2-EOR and CO2-ECBM projects , 2005 .
[41] Christopher A. Rochelle,et al. Modelling CO2 solubility in pure water and NaCl-type waters from 0 to 300 °C and from 1 to 300 bar: Application to the Utsira Formation at Sleipner , 2005 .
[42] Liming Dai,et al. Densities and Solubilities for Binary Systems of Carbon Dioxide + Water and Carbon Dioxide + Brine at 59 °C and Pressures to 29 MPa , 2004 .
[43] J. Gmehling,et al. Experimental determination of carbon dioxide solubility data in aqueous alkanolamine solutions , 2004 .
[44] L. Diamond,et al. Solubility of CO2 in water from −1.5 to 100 °C and from 0.1 to 100 MPa: evaluation of literature data and thermodynamic modelling , 2003 .
[45] Zhenhao Duan,et al. An improved model calculating CO2 solubility in pure water and aqueous NaCl solutions from 273 to 533 K and from 0 to 2000 bar , 2003 .
[46] Sven Horstmann,et al. Experimental determination and prediction of gas solubility data for CO2 + H2O mixtures containing NaCl or KCl at temperatures between 313 and 393 K and pressures up to 10 MPa , 2002 .
[47] B. Rumpf,et al. Solubility of carbon dioxide in aqueous solutions of sodium chloride: Experimental results and correlation , 1994 .
[48] J. Pablo,et al. Effect of a Dissolved Gas on the Solubility of an Electrolyte in Aqueous Solution , 1990 .
[49] Robert M. Enick,et al. CO2 SOLUBILITY IN WATER AND BRINE UNDER RESERVOIR CONDITIONS , 1990 .
[50] Nicolas Kalogerakis,et al. Solubilities of carbon dioxide in water and 1 wt. % sodium chloride solution at pressures up to 10 MPa and temperatures from 80 to 200.degree.C , 1989 .
[51] S. Takenouchi,et al. The solubility of carbon dioxide in nacl solutions at high temperatures and pressures , 1965 .
[52] R. L. Savage,et al. The Solubility of Carbon Dioxide in Calcium Chloride-Water Solutions at 75, 100, 120° and High Pressures1 , 1945 .
[53] Scott Quillinan,et al. Opportunity and Challenges of Integrated Enhanced Oil Recovery Using CO2 Flooding with Geological CO2 Storage in the Ordos Basin, China , 2014 .
[54] B. Rumpf,et al. An Experimental and Theoretical Investigation on the Solubility of Carbon Dioxide in Aqueous Solutions of Strong Electrolytes , 1993 .
[55] Kenneth S. Pitzer,et al. Thermodynamics of electrolytes. I. Theoretical basis and general equations , 1973 .
[56]
Z. Jiao,et al.
Feasibility evaluation of CO