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Binary Diffusion Coefficients of Liquid Vapors in Gases

ISBN:
1-56700-078-9 (Imprimir)

Binary Diffusion Coefficients of Liquid Vapors in Gases

A. N. Berezhnoi
Kazan State Technological University, Kazan, Russia

A. V. Semenov
All-Russian Research Materials Center, Moscow, Russia

Descrição

In this book the authors describe experimental methods of measuring binary diffusion coefficients of liquid vapors in gases. Experimental data on binary diffusion coefficients are given over a wide range of temperature and pressure ranges, and reflect the up-to-date results. Main sections of the book cover the experimental measurement of binary diffusion coefficients, results of experimental measurements at atmospheric pressure and various temperatures, and results of experimental measurements at various pressures and temperatures.



200 pages, © 1997

Table of contents:

Preface
1 Experimental Measurement of Binary Diffusion Coefficients of Liquid Vapors in Gases
1.1 Method of Steady-State Evaporation from an Open Tube
1.2 Method of Evaporation in a Closed Volume
1.3 Method of Diffusion through a Porous Barrier
1.4 Chromatographic Method
1.5 Interferometric Method
1.6 Method of Anisothermic Evaporation in Capillary-Porous Bodies
1.7 Rosie Method
2 Results of Experimental Measurements of Binary Diffusion Coefficients for Liquid Vapors in Gases at Atmospheric Pressure and Various Temperatures
2.1 Experimental Data on Binary Diffusion Coefficients of Vapors in Gases at Atmospheric Pressure and Various Temperatures
2.2 Generalization of the Experimental Data on Vapor Diffusion to Gases
2.3 Results of the Generalization of the Experimental Data on Vapor Diffusion to Gases at Atmospheric Pressure
3 Results of Experimental Measurements of Binary Diffusion Coefficients for Liquid Vapors in Gases at Various Pressures and Temperatures
3.1 Diffusion of Liquid Vapors in Compressed Gases
3.2 Experimental Data on Binary Diffusion Coefficients for Liquid Vapors in Gases at Elevated and High Pressures
3.3 Discussion of the Experimental Results on the Diffusion of Liquid Vapors to Compressed Gases
3.4 Effect of Pressure and Temperature on Binary Diffusion Coefficients of Liquid Vapors in Gases
3.5 Generalization of the Experimental Data on Vapor Diffusion to Compressed Gases
Supplement
References