Hydrocarbon-water Solubilities at High Temperatures Under Vapor-liquid-liquid Equilibrium Conditions

Hydrocarbon-water Solubilities at High Temperatures Under Vapor-liquid-liquid Equilibrium Conditions PDF Author: Ronald P. Guerrant
Publisher:
ISBN:
Category : Solubility
Languages : en
Pages : 248

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Hydrocarbon-water Solubilities at High Temperatures Under Vapor-liquid Equilibrium Conditions

Hydrocarbon-water Solubilities at High Temperatures Under Vapor-liquid Equilibrium Conditions PDF Author: Ronald P. Guerrant
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Halogenated Hydrocarbons

Halogenated Hydrocarbons PDF Author: A.L. Horvath
Publisher: CRC Press
ISBN: 1000110222
Category : Science
Languages : en
Pages : 920

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Book Description
This book promotes a basic understanding of the concept of solubility and miscibility between halogenated hydrocarbons and water. It points out the regularities existing between solubility and physical properties of solute and solvent. The book is valuable to chemists and chemical engineers.

Hydrocarbon-water Solubilities at Elevated Temperatures Near the Three-phase Equilibrium Pressure

Hydrocarbon-water Solubilities at Elevated Temperatures Near the Three-phase Equilibrium Pressure PDF Author: Douglas Wade Ratzlaff
Publisher:
ISBN:
Category :
Languages : en
Pages : 234

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Aqueous Systems at Elevated Temperatures and Pressures

Aqueous Systems at Elevated Temperatures and Pressures PDF Author: Roberto Fernandez-Prini
Publisher: Elsevier
ISBN: 0080471994
Category : Science
Languages : en
Pages : 767

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Book Description
The International Association for the Properties of Water and Steam (IAPWS) has produced this book in order to provide an accessible, up-to-date overview of important aspects of the physical chemistry of aqueous systems at high temperatures and pressures. These systems are central to many areas of scientific study and industrial application, including electric power generation, industrial steam systems, hydrothermal processing of materials, geochemistry, and environmental applications. The authors’ goal is to present the material at a level that serves both the graduate student seeking to learn the state of the art, and also the industrial engineer or chemist seeking to develop additional expertise or to find the data needed to solve a specific problem. The wide range of people for whom this topic is important provides a challenge. Advanced work in this area is distributed among physical chemists, chemical engineers, geochemists, and other specialists, who may not be aware of parallel work by those outside their own specialty. The particular aspects of high-temperature aqueous physical chemistry of interest to one industry may be irrelevant to another; yet another industry might need the same basic information but in a very different form. To serve all these constituencies, the book includes several chapters that cover the foundational thermophysical properties (such as gas solubility, phase behavior, thermodynamic properties of solutes, and transport properties) that are of interest across numerous applications. The presentation of these topics is intended to be accessible to readers from a variety of backgrounds. Other chapters address fundamental areas of more specialized interest, such as critical phenomena and molecular-level solution structure. Several chapters are more application-oriented, addressing areas such as power-cycle chemistry and hydrothermal synthesis. As befits the variety of interests addressed, some chapters provide more theoretical guidance while others, such as those on acid/base equilibria and the solubilities of metal oxides and hydroxides, emphasize experimental techniques and data analysis. - Covers both the theory and applications of all Hydrothermal solutions - Provides an accessible, up-to-date overview of important aspects of the physical chemistry of aqueous systems at high temperatures and pressures - The presentation of the book is understandable to readers from a variety of backgrounds

Solubility data series

Solubility data series PDF Author: A. S. Kertes
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Chemical and Energy Process Engineering

Chemical and Energy Process Engineering PDF Author: Sigurd Skogestad
Publisher: CRC Press
ISBN: 1420087568
Category : Science
Languages : en
Pages : 442

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Book Description
Emphasizing basic mass and energy balance principles, Chemical and Energy Process Engineering prepares the next generation of process engineers through an exemplary survey of energy process engineering, basic thermodynamics, and the analysis of energy efficiency. By emphasizing the laws of thermodynamics and the law of mass/matter conservation, the

Feasibility Study of Material-balance Assessment of Petroleum from the New Albany Shale in the Illinois Basin

Feasibility Study of Material-balance Assessment of Petroleum from the New Albany Shale in the Illinois Basin PDF Author: Michael D. Lewan
Publisher:
ISBN:
Category : Geology
Languages : en
Pages : 40

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Book Description
A material-balance assessment of the petroleum expelled from source rocks in the New Albany Shale and accountable petroleum within the Illinois Basin.

U.S. Geological Survey Bulletin

U.S. Geological Survey Bulletin PDF Author:
Publisher:
ISBN:
Category : Geology
Languages : en
Pages : 40

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Phase Behavior of Light Gases in Hydrocarbon and Aqueous Solvents

Phase Behavior of Light Gases in Hydrocarbon and Aqueous Solvents PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 56

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Book Description
Under previous support from the Department of Energy, an experimental facility has been established and operated to measure valuable vapor-liquid equilibrium data for systems of interest in the production and processing of coal fluids. To facilitate the development and testing of models for prediction of the phase behavior for such systems, we have acquired substantial amounts of data on the equilibrium phase compositions for binary mixtures of heavy hydrocarbon solvents with a variety of supercritical solutes, including hydrogen, methane, ethane, carbon monoxide, and carbon dioxide. The present project focuses on measuring the phase behavior of light gases and water in Fischer-Tropsch (F-T) type solvents at conditions encountered in indirect liquefaction processes and evaluating and developing theoretically-based correlating frameworks to predict the phase behavior of such systems. Specific goals of the proposed work include (a) developing a state-of-the-art experimental facility to permit highly accurate measurements of equilibrium phase compositions (solubilities) of challenging F-T systems, (b) measuring these properties for systematically-selected binary, ternary and molten F-T wax mixtures to provide critically needed input data for correlation development, (c) developing and testing models suitable for describing the phase behavior of such mixtures, and (d) presenting the modeling results in generalized, practical formats suitable for use in process engineering calculations. During the present reporting period, our solubility apparatus was refurbished and restored to full service. To test the experimental apparatus and procedures used, measurements were obtained for the solubility Of C02 in benzene at 160°F. Having confirmed the accuracy of the newly acquired data in comparison with our previous measurements and data reported in the literature for this test system, we have begun to measure the solubility of hydrogen in hexane. The measurements for this system will cover the temperature range from 160 to 280°F at pressures to 2,500 psia. As part of our model evaluation efforts, we examined the predictive abilities of an alternative approach we have proposed for calculating the phase behavior properties of highly non-ideal systems. Using this approach, the liquid phase fugacities generated from an equation of state (EOS) are augmented by a fugacity deviation function correction. The correlative abilities of this approach are compared with those of an EOS equipped with the recently introduced Wong-Sandler (MWS) mixing rules. These two approaches are compared with the current methods for vapor-liquid equilibrium (VLE) calculations, i.e., the EOS (0/0) approach with the van der Waals mixing rules and the split (y/0) approach. The evaluations were conducted on a database comprised of non-ideal low pressure binary systems as well as asymmetric high pressure binary systems. These systems are of interest in the coal liquefaction and utilization processes. The Peng-Robinson EOS was selected for the purposes of this evaluation.