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Chemical thermodynamics for process simulation

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  • 808 pages
  • 29 hours of reading

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This essential textbook uniquely applies thermodynamics to real-world process engineering problems, making it invaluable for advanced students and professionals. It demonstrates the practical application of chemical thermodynamics through actual engineering examples, discussing the advantages and disadvantages of specific models and procedures. Each topic is illustrated with relevant examples tied to practical process simulation issues, and additional calculation examples at the end of each chapter enhance understanding. The book covers fluid behavior for pure fluids, detailing key equations of state and their capabilities. It delves into various quantities of interest in process simulation, their correlations, and predictions. Important terms related to the thermodynamics of mixtures, phase equilibrium calculations, and models applicable to diverse non-electrolyte systems are thoroughly examined. Topics also include membrane processes, polymer thermodynamics, enthalpy of reaction, and chemical equilibria. With explanations of thermodynamic fundamentals, new chapters on modern measurement techniques, and numerous solved examples, the book simplifies complex calculations. It also offers estimation methods for thermophysical properties and phase equilibria in alternative separation processes, supplemented with MathCAD sheets and DDBST programs for reproducibility. This resource is ideal for those in process development, synthe

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Chemical thermodynamics for process simulation, Jürgen Gmehling

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Released
2019
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Title
Chemical thermodynamics for process simulation
Language
English
Publisher
Wiley-VCH
Released
2019
Format
Paperback
Pages
808
ISBN10
3527343253
ISBN13
9783527343256
Series
Rating
5 out of 5
Description
This essential textbook uniquely applies thermodynamics to real-world process engineering problems, making it invaluable for advanced students and professionals. It demonstrates the practical application of chemical thermodynamics through actual engineering examples, discussing the advantages and disadvantages of specific models and procedures. Each topic is illustrated with relevant examples tied to practical process simulation issues, and additional calculation examples at the end of each chapter enhance understanding. The book covers fluid behavior for pure fluids, detailing key equations of state and their capabilities. It delves into various quantities of interest in process simulation, their correlations, and predictions. Important terms related to the thermodynamics of mixtures, phase equilibrium calculations, and models applicable to diverse non-electrolyte systems are thoroughly examined. Topics also include membrane processes, polymer thermodynamics, enthalpy of reaction, and chemical equilibria. With explanations of thermodynamic fundamentals, new chapters on modern measurement techniques, and numerous solved examples, the book simplifies complex calculations. It also offers estimation methods for thermophysical properties and phase equilibria in alternative separation processes, supplemented with MathCAD sheets and DDBST programs for reproducibility. This resource is ideal for those in process development, synthe