Unravelling the Nature of Natural Inorganic Nanoparticles in the Subarnarekha River, Eastern India

Authors

  • Department of Geology, Sister Nibedita Government College, Hastings House, Kolkata
  • Formerly, Department of Metallurgical Engineering, Colorado School of Mines

DOI:

https://doi.org/10.1007/s12594-020-1436-x

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Published

2020-03-31

How to Cite

Chakrabarti, S., & Sen, R. (2020). Unravelling the Nature of Natural Inorganic Nanoparticles in the Subarnarekha River, Eastern India. Journal of Geological Society of India, 95(3), 327–328. https://doi.org/10.1007/s12594-020-1436-x

References

Chokalingam, L. and Dayasagar, B.S. (2005) Morphometry of network and non-network space of basins. Jour. Geophys. Res.. DOI: 10.1029/2005JB003641.

Datta, T.K., Ghosh, N., Sen, R. and Dasgupta, A.K. (1990) Pretreatment of chalcopyrite ore with alkali - a simple technique to improve leaching mediated by Acidothiobacillus ferroxidans. Minerals Engineering , v.3 (6), pp.641-646.

Dayasagar, B.S. and Chokalingam, L. (2004) Fractal dimension of non-network space of a catchment basin. Geophys. Res. Lett., v.31(12), L 12502. DOI: 10/10292004GL019749.

Gilbert, B., Ono, R. K., Ching , K. A. and Kim C. S. (2009) The effects of nanoparticles aggregation processes on aggregate structure and metal uptake. Jour. Colloid and Interface Sci., v.216, pp.106-115.

Rodriguez-Iturbe, I. and Rinaldo, A. (2001) Fractal River Basins, chance and self-organization. Cambridge Univ. Press, New York, 547p.

Von Neumann, J. (1952) Crystal growth : In Metal Surface (C. Herring Ed.), pp.108-110., American Soc. of Metals, Cleveland, USA.

Wigginton, N.S., Haus, K.L. and Hochella, M.F. (2007) Aquatic environmental nanoparticles. Jour. Environ. Monit., v.9, pp.1306-1316.

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