Anion-Exchange Properties of Hydrotalcite-Like Compounds
Tóm tắt
Ion-exchange isotherms between hydrotalcite-like compounds (HT) of the NO3-, Cl-, and SO4- forms and F−, Cl− Br−, I−, OH−, SO42−, CO32−, and Naphthol Yellow S (NYS2−) ions were determined, and the spacing and the width of the 003 reflection were measured as a function of HT composition. The ion-exchange equilibrium constant for HTs of monovalent anions are in the sequence OH− > F− > Cl− > Br− > NO3− > I−, those for divalent anions are in the sequence CO32− > NYS2− > SO42−. The ion-exchange equilibrium constants tend to increase as the diameters of the anions decrease, and the crystallite size in the 001 direction tends to increase with anions having higher selectivity. The OH-form of HT has the smallest basal spacing and the largest crystallite size in the 001 direction.
Tài liệu tham khảo
Allmann, R. (1968) The crystal structure of pyroaurite: Acta Cryst. 24, 972–977.
Gaines, G. L. and Thomas H. C. (1953) Adsorption studies on clay minerals. II. A formation of the thermodynamics of exchange adsorption: J. Chem. Phys. 21, 714–718.
Japanese Standards Association (1965a) Japan Industrial Standard K-8821, Sodium Fluoride: Japanese Standards Association, Tokyo, Japan.
Japanese Standards Association (1965b) Japan Industrial Standard R-9I0I, Chemical Analysis of Gypsum: Japanese Standards Association, Tokyo, Japan.
Miyata, S. (1975) The syntheses of hydrotalcite-like compounds and their structure and physico-chemical properties.—The systems Mg2+-Al3+-NO3−, Mg2+-Al3+-Cl−, Mg2+-Al3+-ClO4−, Ni2+-Al3+-Cl− and Zn2+-Al3+-Cl−: Clay Miner. 23, 369–375.
Miyata, S. (1980) Physico-chemical properties of synthetic hydrotalcites in relation to compositions: Clay Miner. 28, 50–56.
Miyata, S. and Kumura, T. (1973) Synthesis of new hydrotalcite-like compounds and their physico-chemical properties: Chem. Lett. 843–848.
Miyata, S. and Kuroda, M. (1981a) U.S. Pat. 4,284,762.
Miyata, S. and Kuroda, M. (1981b) U.S. Pat. 4,299,759.
Miyata, S. and Okada, A. (1977) Synthesis of hydrotalcitelike compounds and their physico-chemical properties—The systems Mg2+-Al3+-SO42− and Mg2+-Al3+-CrO42−: Clay Miner. 25, 14–18.
Miyata, S., Shiji, N., and Suzuki, T. (1977) Japan Patent No. 880824.
Nippon Bunseki Kagakukai (1961) Bunseki kaga ku binvan: maruzen, Tokyo, p. 517.
Peterson, S. (1954) Anion exchange processes: Ann. N. Y. Acad. Sci. 57, 144–158.
Taylor, H. F. W. (1973) Crystal structure of some double hydroxide minerals: Min. Mag. 39, 377–389.
