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Heavy metal distribution in the Godavari River basin

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Environmental Geology and Water Sciences

Abstract

Suspended and bed sediments collected from the entire region of the Godavari River basin were analyzed for Fe, Mn, Cr, Cu, Ni, and Zn. There are pronounced temporal and spatial variations in the heavy metal distributions. The concentrations of heavy metals in the suspended sediments are significantly higher than the bed sediments.

Throughout the basin heavy metals are enriched in the finer fractions (<2 µm) of the bed sediments. The average heavymetal composition of the sediments is higher when compared to the average Indian river sediments. Heavy-metal concentration in the two shallow cores collected shows, to some extent, the influence of urbanization. When compared to the other tropical Indian rivers such as the Krishna, the Godavari appears to be a significant contributor of heavy metals to the Bay of Bengal. Considering the enormous sediment load of the Godavari River—170 million tons/yr, the heavy metal fluxes to the Bay of Bengal is very significant. Except for the Pranhita, other tributaries of the Godavari do not contribute significant loads of heavy metals. All the metals show high correlation among themselves and the correlation is more pronounced in suspended sediments than in the bed sediments. The heavy-metal distribution, fractionation, and its relationship with total suspended sediments and depth in various parts of the basin are discussed in detail.

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References Cited

  • Biksham, G., and V. Subramanian, 1988, Nature of solute transport in the Godavari basin, India: Journal of Hydrology, v. 101, p. 275–190.

    Google Scholar 

  • Flanagan, F. J., 1973, 1972, values for international geochemical reference samples: Geochimica. et Cosmochimica Acta, v. 37, p. 1189–1198.

    Google Scholar 

  • Forstner, U., and G. T. W. Wittmann, 1981, Metal pollution in the aquatic environment: Berlin, Springer-Verlag, 486 p.

    Google Scholar 

  • Gibbs, R. J., 1977, Transport phases of transition metals in the Amazon and Yukon rivers: Geological Society of America Bulletin, v. 88, p. 829–843.

    Google Scholar 

  • Griffiths, J. C., 1967, Scientific method in analysis of sediments: McGraw-Hill, New York, 508 p.

    Google Scholar 

  • Helmeke, P. A., R. D. Koons, P. J. Schombery, and I. K. Iskander, 1977, Determination of trace element contamination of sediments by multielement analyses of clay size fractions: Environmental Science and Technology, v. 11, p. 984–991.

    Google Scholar 

  • Kalesha, M., M. S. Rao, and B. L. K. Somayajulu, 1980, Deposition rates in Godavari delta: Marine Geology, v. 34, p. M57-M66.

    Google Scholar 

  • Krishnan, M. S., 1966, Geology of India and Burma: Higginbothams, Madras, 365 p.

    Google Scholar 

  • Martin, J., and M. Meybeck, 1979, Elemental mass balance of material carried by major world rivers: Marine Chemistry, v. 7, p. 173–206.

    Google Scholar 

  • Milliman, J. D., and R. H. Meade, 1983, World-wide delivery of river sediment to the oceans: Journal of Geology, v. 91, p. 1–21.

    Google Scholar 

  • Ramesh, R., V. Subramanian, R. Van Grieken, L. Van't Dack, 1989, The elemental chemistry of sediments in the Krishna river basin, India: Chemical Geology, v. 74, p. 331–341.

    Google Scholar 

  • Salomons, W., and U. Forstner, 1984, Metals in the hydrocycle: Berlin, Springer-Verlag, 350 p.

    Google Scholar 

  • Sarin, M. M., D. V. Borole, S. Krishnaswami, 1979, Geochemistry and geochronology of sediments from the Bay of Bengal and equitorial Indian Ocean: Proceedings Indian Academy of Science, v. 88A, p. 131–154.

    Google Scholar 

  • Shapiro, L., and W. W. Burnock, 1962, Rapid analysis of silicate, carbonate and phosphate rocks: U.S. Geological Survey Bulletin, v. 1144A, 56 p.

  • Singh, S. K., and V. Subramanian, 1984, Hydrous Fe and Mn oxides—scavengers of heavy metals in the aquatic environment: CRC Critical Review Environmental Control, v. 14, p. 13–69.

    Google Scholar 

  • Subramanian, V., 1980, Mineralogical input of suspended matter by Indian rivers into the adjacent areas of the Indian Oceans, Marine Geology, v. 36, p. M29-M34.

    Google Scholar 

  • Subramanian, V., L. Van't Dack, R. Van Grieken, 1985, Chemical composition of the river sediments from the Indian subcontinent, Chemical Geology, v. 46, p. 271–276.

    Google Scholar 

  • Subramanian, V., R. Van Grieken, L. Van't Dack, 1987, Heavy metals distribution in the sediments of Ganges and Brahmaputra rivers: Environmental Geology and Water Science, v. 9, p. 93–103.

    Google Scholar 

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Biksham, G., Subramanian, V., Ramanathan, A.L. et al. Heavy metal distribution in the Godavari River basin. Environ. Geol. Water Sci 17, 117–126 (1991). https://doi.org/10.1007/BF01701567

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