Hostname: page-component-586b7cd67f-tf8b9 Total loading time: 0 Render date: 2024-11-25T14:40:40.883Z Has data issue: false hasContentIssue false

The occurrence of palygorskite near Ipswich, Queensland

Published online by Cambridge University Press:  14 March 2018

Lillian N. Rogers
Affiliation:
Commonwealth Scientific and Industrial Research Organization.
A. E. Martin
Affiliation:
Commonwealth Scientific and Industrial Research Organization.
K. Norrish
Affiliation:
Commonwealth Scientific and Industrial Research Organization.

Extract

In the course of an investigation on the determination of soil carbonates a sample of dolomite, from the Ibis dolomite quarry, Mr. Flinders, Queensland, was examined by X-ray diffraction and found to contain palygorskite. As this appears to be the first recognition of the occurrence of the mineral in Australia and as it has a number of commercial uses (e.g. as a drilling mud, catalyst, decolorizer, and absorbent), further work was undertaken.

Type
Research Article
Copyright
Copyright © 1954, The Mineralogical Society

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

1. Caillére, (S.) and Hénin, (S.), X-ray identification and structures of clay minerals. Edited by Brindley, G.W.. Mineralogical Society, London, 1951. p. 234.Google Scholar
2. Brindleu, (G.W.) and Mcewan, (D.M. C.), Structural aspects of the mineralogy of clays and related structures. Ceramics: A Symposium. British Ceramic Soc., London, 1953. p. 15.Google Scholar
3. Jensen, (H.J.), Notes on the geology of the Mt. Flinders and Fassifern districts, Queensland. Proc. Linn. Soc. N.S.W., 1909. vol. 34, p. 67.Google Scholar
4. Jones, (O. A.), The Tertiary deposits of the Morton district, S.E. Queensland. Proe. Roy. Soc. Queensland, 1926. vol 38, p. 23.Google Scholar
5. David, (T.W.E.), The Geology of the Commonwealth of Australia. London, 1950. vol. 1, p. 545.Google Scholar
6. Kerr, (P.F.) and Kulp, (J.L.), Reference clay localities-—United States. Reference clay minerals; A.P.I. Research Project, 49; Preliminary Report, 1951. no. 2, pp. 95.98. [M.A. 11-169, 12412.]Google Scholar
7. Michaud, (R.), Cerighelli (R,), and Droulneau, (G.), Sur les spectres de rayons X des argiles extraites de sols méditerranéens. Compt. Rend. Acad. Sei. Paris, 1945. vol 222, pp. 94.95.Google Scholar
8. Heystek, (H.) and Schmidt, (E.R.), The mineralogy of the attapulgitemontmorilloni'te deposit in the Springbok Flats, Transvaal. Trans. Geol. Soc. South Africa, 1954. vol. 56 (for 1953), pp. 99. 115.Google Scholar
9. Bradley, (W.F.), The structural scheme of attapulgite. Arner. Min., 1940. vol 25, pp. 405.413. [M.A. 8-81.]Google Scholar
10. Kauffman, (A.J.), Fibrous sepiolite fl'om Yavapai County, Arizona. Amer. Min., 1943. vol 28, pp. 512.520. [M.A. 9-123.]Google Scholar
11. Lonachambon, (H.), Sur les propriétés cara.ct6ristiques des palygorskites. Compt. Rend. Acad. Sci. Paris, 1936. vol 203, pp. 672.76. [M.A. 7-100.]Google Scholar
12. Lonachambon, (H.), Sur les caractéristiques des palygorskites. Compt. Rend. Acad. Sci. Paris, 1937. vol 204, pp. 55.58. [M.A. 7-101.]Google Scholar
13. Migeon, (G.), Contribution k l'étude de la définition des s@iolites. Bull. Soc. Franç. Min. 1936, vol 59, pp. 6.134. [M.A. 6-477.]Google Scholar
14. Dwyer, (F.P.) and Mellor, (D. P.), An X-ray study of opals. Journ. Roy. Soc. N,S.W., 1934. vol 68, pp. 47.50. [M.A. 6-8.]Google Scholar
15. Gruner, (J.W.), Abundance and significance of cristobalite in bentonites and fuller's earth. Econ. Geol., 1940. vol. 35, pp. 867.875. [M.A. 8-83.]Google Scholar
16. Muir, (A.), Notes on the soils of Syria. Journ. Soil Sci., 1951, vol. 2, pp. 163.181.CrossRefGoogle Scholar
17. Queensland Dept. of Mines, Published log of the Ipswich bore. Queensland Govt. Mining Journ., 1953. vol. 54, p. 361.Google Scholar
18. Dunstan, (B.), Queensland Portland Cement Company's deposit at Flinders and Gore. Queensland Govt. Mining Journ., 1913. vol. 14, p. 187.Google Scholar
19. Longchambon, (H.), Sur les eonstituants min4ralogiqucs essentiels des argiles, en particulier des terres foulon. Comp. Rend. Aead. Sci. Paris, 1935. vol. 201, pp. 483.485, [M.A. 6-236.]Google Scholar