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The geochemical modeling based on thermodynamic equilibrium has become a well recognized tool for understanding the processes of water-rock interaction and its mechanisms. However, in the last 40 years, has paid little attention to rock-water-gas interaction (heterogeneous multi-component systems) in geothermics (perhaps due to the complexity of the calculations), where the water is only one of these components of the vapor-liquid phases containing a mixture of reactive and inert gases. In this sense, this book is useful for modeling geothermal reservoirs and geochemical interactions through…mehr

Produktbeschreibung
The geochemical modeling based on thermodynamic equilibrium has become a well recognized tool for understanding the processes of water-rock interaction and its mechanisms. However, in the last 40 years, has paid little attention to rock-water-gas interaction (heterogeneous multi-component systems) in geothermics (perhaps due to the complexity of the calculations), where the water is only one of these components of the vapor-liquid phases containing a mixture of reactive and inert gases. In this sense, this book is useful for modeling geothermal reservoirs and geochemical interactions through thermodynamics of liquid-vapor phase equilibria, particularly with the development of an equation for Poynting correction that can correct the deviation from ideality that show at high pressures the liquid-vapor systems. The objective of this book is present a speciation and thermodynamic equilibrium calculations method of vapor-liquid multicomponent phases below the critical temperature of water (647 K) and pressures up to 2 kilobar with computational tools.
Autorenporträt
Geochemist by the National Autonomous University of México (fellowship) and the National Polytechnic Institute (México, fellowship). National Award of Geochemistry 2010 ( México). Professor-Researcher at the University of the Ciénega of Michoacán state, México.