Research Article | Published: 01 December 2010

Mineralogy and trace element studies in the soils of Mussoorie Forest Division, Uttarakhand

A. K. Raina and Hishmi Jamil Hussain

Indian Journal of Forestry | Volume: 33 | Issue: 4 | Page No. 505-510 | 2010
DOI: https://doi.org/10.54207/bsmps1000-2010-97U13Y | Cite this article

Abstract

An attempt has been made to study the mineralogy and distribution pattern and concentration trends of trace element in the soil clay fractions and parent material of Maldeota, Satengal and Dhanaulti in Mussoorie forest division, Uttarakhand.  Light minerals constituted bulk of sand fractions and comprised quartz, feldspar and mica in order of their abundance. Heavy minerals contributed small fractions and were dominated by opaque minerals, calcite, chlorite, zircon, hornblende etc. Clay fractions are characterized by illite as the dominant clay mineral associated with appreciable amount of kaolinite, mixed layer minerals, chlorite and small amounts of vermiculite, calcite and quartz. Chemical analysis of clay fractions indicates that the soils developed over quartzite, black shale, phosphorite and phyllite, do not show marked variation in silica-sesquioxides as well as silica-alumina ratios within the profiles, whereas in the profiles developed over dolomite and limestone, impoverishment of the sesquioxides in the upper horizons was noticed. This has resulted in the increase in the content of silica in the clay complex of the latter soils as also an increase in silica-sesquioxides ratio at the surface. Trace element studies of rocks and clay fractions show significant correlation between the trace elements (Viz. V, Cr, Co, Ni, Zn, Bo etc.) available in rocks and corresponding clay fractions.

Keywords

Distribution pattern, Soil clay fractions, Heavy minerals, Trace elements, Podzolic nature, Petrological microscope, Correlation matrix

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References

1. Black, C.A. (1965). Methods of Soil Analysis. Am. Soc. Agron. Inc. Madison, USA.  https://doi.org/10.2134/agronmonogr9.1

2. Brooks, R.R. (1980). Accumulation of nickel in terrestrial environment. In: Nriagu, J.O., (ed) Nickel in Environment. Willey, New York, 407-430

3. Cady, J.G. (1965). Petrographic Microscopic Techniques. In: Methods of Soil Analysis. Part I, Physical and Mineralogical Properties, Black, C.A. (ed). American Society of Agronomy Inc. Madison, Wisconsin, U.S.A. 604.  https://doi.org/10.2134/agronmonogr9.1.c46

Google Scholar

4. Hutchinson, T.C. (1981). Nickel. In: Lepp, N.W. (ed), Effect of heavy metal pollution on plants. Applied Sci. Publ., London. 171-211.  https://doi.org/10.1007/978-94-011-7339-1_6

Google Scholar

5. Jackson, M.L. (1979). Soil Chemical Analyses - Advance Course. University of Wisconsin, Madison

Google Scholar

6. Kaistha, B.P and Gupta, R.D. (1993). Morphology, mineralogy, genesis and classification of soils of the subhumid temperate highlands of the Central Himalayas. Jour. Ind. Soc. Soil. Sci. 41 (1): 120-124

Google Scholar

7. Minhas, R.S., Harminder Minhas and Verma, S.D. (1997). Soil characterization in relation to forest vegetation in the wet temperate zone of Himachal Pradesh. J. Ind. Soc. Soil. Sci., 45 (1): 146-151.

Google Scholar

8. Raina, A.K., Jha, M.N. and Pharasi, S.C. (1998). Fine sand mineralogy of some selected soils of Mussoorie forest division of Uttar Pradesh. Indian Forester. 124(11)883-890.

Google Scholar

9. Raina, A.K., Jha, M.N. and Pharasi, S.C.  (2001). Forest Soil: Vegetation relationship in Mussoorie forest division (Uttaranchal). Indian Forester. 127(8):883-890.

Google Scholar

10. Samra, J.S., Singhal, R.M., Banerjee, S.P. and Sharma, S.D. (1985). Forest Soil characteristics with reference to clay mineralogy and natural vegetation.  Indian Forester.  111 (1):  22-27.

Google Scholar

11. Singhal, R.M., Samra, J.S., Sharma, S.D. Pandey, P. and Sharma, S.K.  (1980). Soil Biosequence of a forest land of Doon Valley with reference to vegetation. Presented at Ind. Symp. on Tropical Rural Ecosystems held at A.P.S. Univ., Rewa.

Google Scholar

12. Singhal, R.M. and Sharma, S.D. (1985). Study of the soils of Doon Valley Forest. J. Ind. Soc. Soil. Sci. 33: 627-634.

Google Scholar

13. Wild, A. (1993). Soils and the Environment: An Introduction. Cambridge Univ., Press 287 pp

Google Scholar

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How to cite

Raina, A.K. and Hussain, H.J., 2010. Mineralogy and trace element studies in the soils of Mussoorie Forest Division, Uttarakhand. Indian Journal of Forestry, 33(4), pp.505-510. https://doi.org/10.54207/bsmps1000-2010-97U13Y

Publication History

Manuscript Published on 01 December 2010

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