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Ilmenite from the Chavara deposit, India: a critical evaluation

Published online by Cambridge University Press:  05 July 2018

C. Ramakrishnan
Affiliation:
Centre for Earth Science Studies, P.B. No. 7250, Thuruvikkai P.O., Trivandrum-695 031, India
R. Mani
Affiliation:
Centre for Earth Science Studies, P.B. No. 7250, Thuruvikkai P.O., Trivandrum-695 031, India
D. S. Suresh Babu
Affiliation:
Centre for Earth Science Studies, P.B. No. 7250, Thuruvikkai P.O., Trivandrum-695 031, India

Abstract

The mineralogical status of ilmenite from a prominent modern placer deposit of India is illustrated using different techniques. Compositional, powder XRD, TGA and SEM analyses prove that consistent low temperature alteration took place in Chavara ilmenite leading to the formation of a pseudorutile-hydrated-ilmenite stage. Except for the indication of a geochemical zonation at the southern tip of the deposit, the Chavara ilmenite points to a common origin throughout its 22 km stretch along the coast. We advocate a major segregation activity by marine factors to the accumulated sediments in the shelf zone in order to originate such a huge deposit of homogeneous composition.

Type
Mineralogy
Copyright
Copyright © The Mineralogical Society of Great Britain and Ireland 1997

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Footnotes

*

Department of Geology, Annamalai University, Annamalai Nagar-608 002, India.

References

Anand, R.R. and Gilkes, R.J. (1984) Weathering of ilmenite in a lateritic pallid zone. Clays Clay Miner., 32, 363-74.CrossRefGoogle Scholar
Bailey, S.W., Cameron, E.N., Spedden, H.R. and Weege, R.J. (1956) The alteration of ilmenite in beach sands. Econ. Geol., 51, 263-79.CrossRefGoogle Scholar
Chaudhuri, J.N.B. and Newesely, H. (1990) Transformation ofilmenite FeTiO3 to leucoxene TiO2 under the influence of weathering reactions. Indian J. Technol., 28, 1323.Google Scholar
Frost, M.T., Grey, I.E., Harrowfield, I.R. and Mason, K. (1983) The dependence of alumina and silica contents on the extent of alteration of weathered ilmenites from western Australia. Mineral. Mag., 47, 201-8.CrossRefGoogle Scholar
Gillson, J.L. (1959) Sand deposits of titanium minerals. Mining Eng., 2, 421-9.Google Scholar
Grey, I.E., Li, C. and Watt, A.J. 1983) Hydrothermal synthesis of goethite-rutile intergrowth structures and their relationship to pseudorutile. Amer. Mineral., 68, 981-8.Google Scholar
Hugo, V.E. and Cornell, D.H. (1991) Altered ilmenites in Holocene dunes from Zululand, South Africa: Petrographic evidence for multistage alteration. S. Afr. J. Geol., 94(5/6), 365-78.Google Scholar
Mallik, T.K., Vasudevan, V., Aby Verghese, P. and Machedo, T. (1987) Black sand placer deposits of Kerala beach, southwest India. Marine Geol., 77, 129-150.CrossRefGoogle Scholar
Mitra, S., Ahmed, S.S. and Moon, H.S. (1992) Mineralogy and chemistry of the opaque of Cox's Bazar (Bangladesh) beach sands and the oxygen fugacity of their provenance. Sedimentary Geology, 77, 235-47.CrossRefGoogle Scholar
Morad, S. and Aldahan, A.A. (1986) Alteration of detrital Fe-Ti oxides in sedimentary rocks. Geol. Soc. Amer. Bull., 97, 567-78.2.0.CO;2>CrossRefGoogle Scholar
Nair, A.G., Damodaran, K.T. and Suresh Babu, D.S. (1995) Mineralo-Chemical analysis of ilmenites from the River Valliyar and the Manavalakurichi Beach, Tamil Nadu. J. Geol. Soc. India, 46, 655-61.Google Scholar
Prabhakara Rao, G. (1968) Sediments of the near-shore region off Neendakara-Kayamkulam coast and the Ashtamudi and Vatta estuaries, Kerala, India. Bull. Nat. Sci. India, 30, 513-51.Google Scholar
Ramakrishnan, C. Mani, R. and Suresh Babu, D.S. (1995) Major element variations in the ilmenites of Chavara deposit, Kerala and its significance. Proc. on Seventh Kerala Science Congress, 32—34.Google Scholar
Soman, K. (1985) Origin and geologic significance ofthe Chavara placer deposit, Kerala. Current Science. 54, 280-81.Google Scholar
Subramanyam, N.P., Rao, N.K. Narasimhan, D., Rao, G.V.U., Jaggi, N.K. and Rao, K.R.P.M. (1982) Alteration ofbeach sand ilmenite from Manavalakurichi, Tamil Nadu, India. J. Geol. Soc. India, 23, 168-74.Google Scholar
Suresh Babu, D.S. and Thrivikramaji, K.P (1993) Palaeogeographic interpretation of Kerala beach placers, SW coast of India. Ind. J. Mar. Sci., 22, 203-8.Google Scholar
Suresh Babu, D.S., Thomas, K.A., Mohan Das, P.N. and Damodaran, A.D. (1994) Alteration of ilmenite in the Manavalakurichi deposit, India. Clays Clay Miner., 42, 567-7..CrossRefGoogle Scholar
Temple, A.K. (1966) Alteration of ilmenite. Econ. Geol., 61, 695-714.CrossRefGoogle Scholar
Tipper, G.H. (1914) Monazite sands of Travancore. Rec. Geol. Sur. India, 44, 186-95.Google Scholar
Vogel, A.I. (1961) A Text Book of Quantitative Inorganic Analysis. Longmans, London, 856.Google Scholar
Wort, M.J. and Jones, M.P. (1980) X-ray diffraction and magnetic studies of altered ilmenites and pseudorutile. Mineral. Mag., 43, 659-63.CrossRefGoogle Scholar