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|a Chemical thermodynamics for process simulation /
|c Jurgen Gmehling, Michael Kleiber, Bärbel Kolbe, and Jürgen Rarey.
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|a Second, completely revised and enlarged edition.
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|a Weinheim :
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|c 2019.
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|a Introduction -- PvT Behavior of Pure Components -- Correlation and Estimation of Pure Component Properties -- Properties of Mixtures -- Phase Equilibria in Fluid Systems -- Caloric Properties -- Electrolyte Solutions -- Solid-Liquid Equilibria -- Membrane Processes -- Polymer Thermodynamics -- Applications of Thermodynamics in Separation Technology -- Enthalpy of Reaction and Chemical Equilibria -- Examples for Complex Systems -- Practical Applications -- Experimental Determination of Pure Component and Mixture Properties -- Introduction to the Collection of Example Problems -- Pure Component Parameters -- Coefficients for High-Precision Equations of State -- Useful Derivations -- Standard Thermodynamic Properties for Selected Electrolyte Compounds -- Regression Technique for Pure Component Data -- Regression Techniques for Binary Parameters -- Ideal Gas Heat Capacity Polynomial Coefficients for Selected Compounds -- UNIFAC Parameters -- Modified UNIFAC Parameters -- PSRK Parameters -- VTPR Parameters.
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|a Online resource; title from PDF title page (EBSCO, viewed March 21, 2019)
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|a Includes a bibliographical references and index.
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|b ACADEMIC - Process Design, Control & Automation
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|a Production engineering.
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|a Thermodynamics
|x Simulation methods.
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|a Technique de la production.
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|a Thermodynamique
|x Méthodes de simulation.
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|a Gmehling, Jürgen,
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|a Kleiber, Michael,
|e editor.
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|a Kolbe, Bärbel,
|e editor.
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|a Rarey, Jürgen,
|e editor.
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|i Print version:
|t Chemical thermodynamics for process simulation.
|b Second, completely revised and enlarged edition.
|d Weinheim : Wiley-VCH, 2019
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