Hostname: page-component-78c5997874-xbtfd Total loading time: 0 Render date: 2024-11-14T23:22:13.897Z Has data issue: false hasContentIssue false

Identification of iron-containing impurities in natural kaolinites using the Mössbauer effect

Published online by Cambridge University Press:  05 July 2018

C. S. Hogg
Affiliation:
Research Laboratories, English Clays, Lovering, Pochin & Co. Ltd., St. Austell, Cornwall
P. J. Malden
Affiliation:
Research Laboratories, English Clays, Lovering, Pochin & Co. Ltd., St. Austell, Cornwall
R. E. Meads
Affiliation:
Department of Physics, University of Exeter

Summary

Two clay samples originating in the kaolinized granite area near St. Austell, Cornwall, have been examined by Mössbauer spectroscopy. The iron-containing impurity in the sample with a red discoloration (sample A) has, by measurement of the hyperfine magnetic field, been identified as hematite. In the case of sample B, which was yellow in colour, preliminary Mössbauer work indicated β-FeOOH as the impurity, but detailed measurements of hyperfine field and Nöel temperature, when compared with similar results for a synthetic β-FeOOH sample, suggested otherwise. X-ray and chemical work suggested that the iron-containing phase in sample B is goethite, α-FeOOH in which some substitution of Al+3 for Fe3+ has occurred; the Mössbauer data are consistent with this conclusion. Both clay samples exhibited superparamagnetic behaviour and this has been utilized to obtain rough estimates of the mean radius of the particles of the iron-containing impurity. These were 117 Å for the α-Fe2O3 in sample A and 270 Å for aluminian α-FeOOH in sample B.

Type
Research Article
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1975

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

Bhide, (V. G.) and Date, (S. K.), 1968. Phys. Rev. 172, 345.CrossRefGoogle Scholar
Clark, (P. E.), Nichol, (A. W.), and Carlow, (J. S.), 1967. Journ. Sci. Instr. 44, 1001.CrossRefGoogle Scholar
Forsyth, (J. B.), Hedley, (I. G.), and Johnson, (C. E.), 1968. Journ. Phys. C. 1, 179.CrossRefGoogle Scholar
Gangas, (N. H.), Stmopolrlos, (A.), Kostikas, (A.), Yassoglou, (N. J.), and Filippakis, (S.), 1973. Clays and Clay Minerals, 21, 151.CrossRefGoogle Scholar
Greenland, (D. J.) and Oades, (J. M.), 1968. Trans. Int. Congr. Soil Sci. (9th), 1, 657.Google Scholar
Hogg, (C. S.) and Meads, (R. E.), 1970. Min. Mag. 37, 606.CrossRefGoogle Scholar
Janot, (C.), Gilbert, (H.), and Tobtas, (C.), 2973. Bull. Soc. fran;. Min. Crist., 96, 281.Google Scholar
Johnson, (C. E.), 1969. Journ. Phys. C. 2, 1996.CrossRefGoogle Scholar
Jonas, (K.) and Solymar, (K.), 1970. Acta Chim. (Budapest), 66, 383.Google Scholar
Jonas, (K.) and Solymar, (K.), 1971. Banyusz. Kohasz. Lapok, Kohasz. 104, 226.Google Scholar
Kalyamin, (A. V.), Lur'e, (B. G.), Marshak, (L. A.), and Murin, (A. N.), 1973. Soviet Phys. (Solid State), 14, 3083.Google Scholar
Korecz, (L.), Kurucz, (I.), Menczel, (G.), Papp-Molnar, (E.), Pungor, (E.), and Burger, (K.), 1972. Talanta, 19, 2599.CrossRefGoogle Scholar
Kündig, (W.), Bömmell, (H.), Constabaris, (G.), and Lindquist, (R. H.), 1966. Phys. Rev. 142, 327.CrossRefGoogle Scholar
Malden, (P. J.) and Meads, (R. E.), 1967. Nature, 215, 844.CrossRefGoogle Scholar
Muan, (A.), 1958. Amer. Journ. Sci. 256, 413.CrossRefGoogle Scholar
Norrish, (K.) and Taylor, (R. M.), 1961. Journ. Soil. Sci. 12, 294.CrossRefGoogle Scholar
Rossiter, (M. J.) and Hodgson, (A. E. M.) 1965. Journ. Inorg. Nucl. Chem. 27, 63.CrossRefGoogle Scholar
Shinjo, (T.), 1966. Journ. Phys. Soc. Jap. 21, 917.CrossRefGoogle Scholar
Solymar, (K.), 1969. Magy. Allami. Foldt. Intez. Evk. 54, 359.Google Scholar
Srivastava, (J. K.) and Sharma, (R. P.), 1972. Phys. Stat. Solid. 49(b), 135.CrossRefGoogle Scholar
Takada, (T.), Kiyama, (M.), and Shinjo, (T.), 1964. Journ. Phys. Soc. Jap. 19, 1744.CrossRefGoogle Scholar
Vorznyuk, (P. O.) and Duminin, (V. N.), 1973. Soviet Phys. (Solid State), 15, 1265.Google Scholar
Wolf, (R. H. H.), Wrischer, (M.), and Šipalo-Zuljević (J.), 1967. Kolloid Zeits., 215, 57.Google Scholar