Search Results - "Springer, Ronald D"

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  1. 1

    A thermodynamic model for predicting mineral reactivity in supercritical carbon dioxide: I. Phase behavior of carbon dioxide–water–chloride salt systems across the H2O-rich to the CO2-rich regions by Springer, Ronald D., Wang, Zheming, Anderko, Andrzej, Wang, Peiming, Felmy, Andrew R.

    Published in Chemical geology (05-09-2012)
    “…Phase equilibria in mixtures containing carbon dioxide, water, and chloride salts have been investigated using a combination of solubility measurements and…”
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    Journal Article
  2. 2

    Nitric and Sulfuric Acid Solubility in Dense Phase CO2 by Morland, Bjørn H, Tadesse, Adriana, Svenningsen, Gaute, Springer, Ronald D, Anderko, Andre

    “…Research has shown that strong acids (i.e., sulfuric and nitric acids) may be produced as a result of reactions between impurities during CO2 transport within…”
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    Journal Article
  3. 3

    Ethylene Glycol and Its Mixtures with Water and Electrolytes: Thermodynamic and Transport Properties by Wang, Peiming, Kosinski, Jerzy J, Anderko, Andrzej, Springer, Ronald D, Lencka, Malgorzata M, Liu, Jiangping

    “…A comprehensive thermodynamic model has been developed for calculating thermodynamic and transport properties of mixtures containing monoethylene glycol (MEG),…”
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    Journal Article
  4. 4

    Phase behavior of aqueous Na-K-Mg-Ca-Cl-NO3 mixtures : Isopiestic measurements and thermodynamic modeling by GRUSZKIEWICZ, Mirostaw S, PALMER, Donald A, SPRINGER, Ronald D, PEIMING WANG, ANDERKO, Andrzej

    Published in Journal of solution chemistry (01-06-2007)
    “…A comprehensive model has been established for calculating thermodynamic properties of multicomponent aqueous systems containing the Na+, K+, Mg2+, Ca2+, Cl−…”
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    Journal Article
  5. 5

    Thermodynamic modeling of boric acid and selected metal borate systems by Wang, Peiming, Kosinski, Jerzy J., Lencka, Malgorzata M., Anderko, Andrzej, Springer, Ronald D.

    Published in Pure and applied chemistry (01-01-2013)
    “…A comprehensive thermodynamic model, referred to as the mixed-solvent electrolyte (MSE) model, has been applied to calculate phase equilibria, speciation, and…”
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    Journal Article
  6. 6

    Water Solubility at Saturation for CO2–CH4 Mixtures at 323.2 K and 9.000 MPa by Loring, John S., Bacon, Diana H., Springer, Ronald D., Anderko, Andrzej, Gopinath, Smitha, Yonkofski, Catherine M., Thompson, Christopher J., McGrail, Bernard Peter, Rosso, Kevin M., Schaef, Herbert T.

    Published in Journal of chemical and engineering data (11-05-2017)
    “…The concentration of H2O dissolved in CO2–CH4 supercritical fluids is an important parameter that can control shale permeability, affect CH4 transmissivity,…”
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    Journal Article
  7. 7

    Modeling Speciation and Solubility in Aqueous Systems Containing U(IV, VI), Np(IV, V, VI), Pu(III, IV, V, VI), Am(III), and Cm(III) by Wang, Peiming, Anderko, Andrzej, Kosinski, Jerzy J., Springer, Ronald D., Lencka, Malgorzata M.

    Published in Journal of solution chemistry (01-03-2017)
    “…A comprehensive thermodynamic model, referred to as the Mixed-Solvent Electrolyte model, has been applied to calculate phase equilibria and chemical speciation…”
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    Journal Article
  8. 8

    Modeling acid–base equilibria and phase behavior in mixed-solvent electrolyte systems by Kosinski, Jerzy J., Wang, Peiming, Springer, Ronald D., Anderko, Andrzej

    Published in Fluid phase equilibria (01-08-2007)
    “…A comprehensive thermodynamic framework for mixed-solvent electrolyte systems has been applied to the simultaneous computation of phase behavior and acid–base…”
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    Journal Article Conference Proceeding
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    Modeling chemical and phase equilibria in geochemical systems using a speciation-based model by Wang, Peiming, Anderko, Andrzej, Springer, Ronald D., Kosinski, Jerzy J., Lencka, Malgorzata M.

    Published in Journal of geochemical exploration (01-07-2010)
    “…A comprehensive thermodynamic model has been applied to calculating phase equilibria, speciation, and other thermodynamic properties of systems that are of…”
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    Journal Article
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