Hostname: page-component-77c89778f8-vpsfw Total loading time: 0 Render date: 2024-07-16T23:17:42.608Z Has data issue: false hasContentIssue false

Absorptive and Swelling Properties of Clay-Water System

Published online by Cambridge University Press:  01 January 2024

Isaac Barshad*
Affiliation:
Department of Soils, and Assistant Soil Chemist, Agricultural Experiment Station, University of California, Berkeley, California, USA

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
Part II—Properties of Clays
Copyright
© Clay Minerals Society 1952

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Selected References

Alexander, L T Haring, M M, Vapor pressure-water content relations for certain typical soil colloids .Tour. Phys. Chemistry 1936 40 195205 10.1021/j150371a005.CrossRefGoogle Scholar
Anderson, M S, The influence of substituted cations on the properties of soil colloids Jour. Agr. Ros. 1929 38 505584.Google Scholar
Barshad, I, Vermiculite and its relation to hiotite as revealed by base exchange reactions. X-ray analyses, differential thermal curves, and water content Am. Mineralogist 1948 33 055678.Google Scholar
Barshad, I, The nature of lattice expansion and its relation to hydration in montmorillonite and vermiculite Am. Mineralogist 1949 34 675684.Google Scholar
Barshad, T, The effect of the interlayer cations on the expansion of the mica type of crystal lattice Am. Mineralogist 1950 35 225238.Google Scholar
Barshad, I, Factors affecting the interlayer expansion of vermiculite and montmorillonite with organic substances Soil Sci. Soc. Am. Proc. 1951 1952 16 176182 10.2136/sssaj1952.03615995001600020018x.CrossRefGoogle Scholar
Barshad, I, Temperature and heat of reaction calibration of the differential thermal analysis apparatus Am. Mineralogist 1952 37 667694.Google Scholar
Baver, L D Horner, G M, Water content of soil colloids as related to their chemical composition Soil Sci. 1933 36 329353 10.1097/00010694-193311000-00001.CrossRefGoogle Scholar
Baver, L D Winterkorn, H, Sorption of liquids by soil colloids. II. Surface behavior in the hydration of clays Soil Sci. 1935 40 403419 10.1097/00010694-193511000-00006.CrossRefGoogle Scholar
Bradley, W F Grim, R E Clark, W L, A study of the behavior of montmorillonite upon wetting Zeitschr. Krist. 1937 97 216222.Google Scholar
Cornet, I, Expansion of the montmorillonite lattice on hydration Jour. Chemical Physics 1950 18 623626 10.1063/1.1747711.CrossRefGoogle Scholar
Dyal, R S Hendricks, S B, Total surface of clays in polar liquids as a characteristic index Soil Sci. 1950 69 421432 10.1097/00010694-195006000-00014.CrossRefGoogle Scholar
Freundlich, H Schmidt, O Lindau, G, über die Thixotropie von B’entonite-Suspensionem Kolloid Beihefte 1932 36 4381.CrossRefGoogle Scholar
Hendricks, S B Jefferson, M E, Crystal structure of vermieulities and mixed-chlorites Am. Mineralogist 1938 23 851862.Google Scholar
Hendricks, S B Nelson, R H Alexander, L T, Hydration mechanism of the clay mineral montmorillonite saturated with various cations Am. Chem. Soc. Jour. 1940 62 14571464 10.1021/ja01863a037.CrossRefGoogle Scholar
Hendricks, S B, Base exchange of crystalline silicates Ind. Eng. Chem. 1945 37 625630 10.1021/ie50427a010.CrossRefGoogle Scholar
Hofmann, U Bilke, W, Über die innerkristallino quellung und das Basenaustchvermogen dcs Montmorillonite Kollard-Zeitschr. 1930 77 238251.Google Scholar
Katz, J R, The laws of swelling Faradav Soc. Trans. 1933 29 279300 10.1039/tf9332900279.CrossRefGoogle Scholar
Keen, B A, The system of soil-soil moisture Faraday Soc. Trans. 1921 17 228243 10.1039/TF9221700228.CrossRefGoogle Scholar
Keen, B A Raczkowski, H J, The relation betwcen the clav ccntent and certain phvsical properties of a soil Jour. Agr. Sci. 1921 11 441449 10.1017/S0021859600004469.CrossRefGoogle Scholar
Keenan, A G Mooney, R W Wood, L A, The relation betweeu exchangeable ions and water absorption on kaolinite Jour, Phys. and Colloid Chemistry 1951 55 14621474 10.1021/j150492a006.CrossRefGoogle Scholar
Kuron, H, Absorption von Dämpfen und Gason an Böden und Toncn und ihrc Vormendung zur aberflachenernittlung diesen Stuffe Kollod. Beihefte 1932 36 178250.CrossRefGoogle Scholar
Maegdefrau, E Hofmann, H, Die Kristallstruktur des Montmorillonite Kolloid.-Zeitschr. 1937 77 238251.Google Scholar
Marshall, C E, The colloid chemistry of the silicate minerals Academic Press Inc., New York, N. Y. 1949.Google Scholar
Mattson, S, The laws of soil colloidal behavior: VIII. Forms and functions of water Soil Sci. 1932 33 301323 10.1097/00010694-193204000-00004.CrossRefGoogle Scholar
Mering, J, On the hydration of montmorillonite Faraday Soc. Trans. 1940 42B 205219.Google Scholar
Mooney, R W Keenan, A G Wood, L A, Adsorption of water vapor by montmorillonite. I. Heat of desorption and application of B E T theory Am. Chem. Soc. Jour. 1952 74 13071371.CrossRefGoogle Scholar
Mooney, R W Keenan, A G Wood, L A, Adsorption of water vapor by montmorillonite. II. Effect of exchangeable ions and lattice swelling as measured by x-ray diffraction Am. Chem. Soc., Jour. 1952 74 13711374 10.1021/ja01126a002.CrossRefGoogle Scholar
Nagelschmidt, G, On the lattice shrinkage and structure of montmorillonite Zeitschr. Krist. 1936 93 481487.Google Scholar
Nelson, R A Hendricks, S B, Specific surface of some clay minerals, soils, and soil colloids Soil Sci. 1942 56 285296 10.1097/00010694-194310000-00004.CrossRefGoogle Scholar
Puri, A N, Soils their physics and chemistry 1949 New York, N. Y. Reinhold Publishers Corp..Google Scholar
Ross, C S Hendricks, S B, Minerals of the montmorillonite group, their origin and relation to soils and clays IT. S. Geol. Survey Tech. Paper 205B 1945 2377.CrossRefGoogle Scholar
Russell, B W Gupta, R S, On the measurement of imbibitional water Jour. Agr. Sci. 1934 24 315325 10.1017/S0021859600006675.CrossRefGoogle Scholar
Thomas, M D, Aqueous vapor pressure of soils Soil Sci. 1921 11 409434 10.1097/00010694-192106000-00001.CrossRefGoogle Scholar
Thomas, M D, Aqueous vapor pressure of soils: II. Studies in dry soil Soil Sci. 1921 17 118 10.1097/00010694-192401000-00001.CrossRefGoogle Scholar
Thomas, M D, Aqueous vapor pressure of soils: III. Soil structure as influenced by mechanical treatments and soluble salts Soil Sci. 1928 25 409418 10.1097/00010694-192805000-00012.CrossRefGoogle Scholar
Thomas, M D, Aqueous vapor pressure of soils: IV. Influence of replaceable bases Soil Sci. 1928 25 485493 10.1097/00010694-192806000-00010.CrossRefGoogle Scholar
von Ensline, O, Uber einen apparat zur messung der flus-sigkeitsaufnahme von quellbaren und porosen stoffer un zur charakterisierung der benezbarkeit Chem. Fabrik. 1933 27 147148.Google Scholar
Winterkorn, H Bayer, L D, Sorption of liquids by soil colloids. I. Liquid intake and swelling by soil colloidal material Soil Sci. 1934 38 291298 10.1097/00010694-193410000-00004.CrossRefGoogle Scholar