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This work presents an up-to-date account of some of the fundamental aspects of liquid-liquid extraction technology together with an account of extraction processes in a number of important industries. The work is divided into two parts. Volume 1 is concerned with the thermodynamics of phase equilibria; mass transfer in liquid-liquid systems, including the complicating role of interfacial turbulence; behavior of liquid-liquid dispersions; and the selection and design of countercurrent contactors for particular applications. Volume 2 gives an account of the process chemistry and associated extraction operations in a number of industries of current interest. New extraction techniques have been developed in recent years for specific applications and these are illustrated with reference to the hydrometallurgical, nuclear, pharmaceutical and food industries.
This volume investigates the fundamental physical and chemical principles governing liquid-liquid extraction processes to provide a comprehensive framework for industrial application. John D. Thornton, a recognized authority in chemical engineering, synthesizes complex data regarding thermodynamics and mass transfer to assist engineers in the design of efficient extraction systems. The text serves as a technical reference, bridging the gap between theoretical interfacial phenomena and the practical requirements of industrial extractor hydrodynamics.
What You Will Find
Experts in chemical engineering identify this work as a foundational technical resource for understanding the mechanics of solvent extraction. Readers frequently note the high level of academic density and the rigorous mathematical approach required to fully utilize the design principles presented.
Page Count:
624
Publication Date:
1992-04-23
Publisher:
Oxford University Press
ISBN-10:
0198562365
ISBN-13:
9780198562368
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