Heavy Minerals in Sands along Brahmaputra (Jamuna) River of Bangladesh
- 1 Nuclear Minerals Unit, Atomic Energy Research Establishment, Dhaka, Bangladesh
- 2 Material Science Division, Atomic Energy Center, Bangladesh Atomic Energy Commission, Dhaka, Bangladesh
- 3 Nuclear Minerals Unit, Atomic Energy Research Establishment, Dhaka, Bangladesh
- 4 Nuclear Minerals Unit, Atomic Energy Research Establishment, Dhaka, Bangladesh
- 5 Health Physics and Radioactive Waste Management Unit, Atomic Energy Research Establishment, Dhaka, Bangladesh
- 6 Health Physics and Radioactive Waste Management Unit, Atomic Energy Research Establishment, Dhaka, Bangladesh
- 7 Department of Physics, Jahangirnagar University, Dhaka, Bangladesh
Abstract
Sands along Brahmaputra River of Bangladesh have long been considered to be a source of heavy minerals (HMs) since it traversed a long way through various terrains. An attempt has been made under this research work to determine the kinds and amounts of heavy minerals in the sands sourced from the river system. Samples from 14 locations along Brahmaputra River covering 30 km distance from upstream to downstream of the river are found to contain different heavy minerals concentration with a range of 7.92 - 25.16 weight% with the remaining of the sample comprising silicate and aluminosilicates. Mineral characterization from peak positions in diffractogram of X-ray Diffraction (XRD) evaluate quartz, feldspar and mica are major categories light mineral while rutile, magnetite, illmenite, zircon, monazite, garnet, uranium arsenide and uranium fluoride are the major types heavy minerals. Ilmenite and rutile are main contributors of total heavy mineral (THM). Titanium bearing minerals ilmenite and rutile contributes 26.22% - 31.01% and 14.57% - 23.50% of THM. In the present study area, most of the sands are found to be fine and medium grained as obtained from the particle sizes analysis using 18- to 230-mesh.
- de Meijer, R.J., James, J.R., Jennings, P.J. and Koeyers, J.E. (2001) Cluster Analysis of Radionuclide Concentration in Beach Sand. Applied Radiation and Isotopes, 54, 535-542. http://dx.doi.org/10.1016/S0969-8043(00)00196-2
- Umitsu, M. (2001) Holocene Sea-Level Changes and Coastal Evolution in Japan. The Quaternary Research, 30, 187-196.
- Aral, H., Pownceby, M.I. and Im, J. (2008) Characterisation and Beneficiation of Zircon-Rich Heavy Mineral Concentrates from Central Kalimantan (Borneo, Indonesia). Transactions of the Institution of Mining and Metallurgy Section B—Applied Earth Science, 117, 77-87. http://dx.doi.org/10.1179/174327508X339837
- Force, E.R. (1991) Geology of Titanium-Mineral Deposits. Geological Society of America, Special Paper 259. http://dx.doi.org/10.1130/spe259-p1
- Coleman, J.M. (1969) Brahmaputra River: Channel Processes and Sedimentation. Sedimentary Geology, 3, 139-239. http://dx.doi.org/10.1016/0037-0738(69)90010-4
- Rahman, M.A., Biswas, P.K., Zaman, M.N., Miah, M.Y., Hossain, T. and Imamul Huq, S.M. (2012) Characterisation of the Sand of Brahmaputra River of Bangladesh. Bangladesh Journal of Scientific and Industrial Research, 47, 167-172.
- Carver, R.E. (1971) Heavy Mineral Separation. In: Carver, R.E., Ed., Procedures in Sedimentary Petrology, Wiley, NewYork, 427-452.
- Solai, A., Suresh Gandhi, M., Chandrasekaran, K. and Ram Mohan, V. (2009) Distribution of Heavy Mineral Sand Their Provenance Studies in and around Tamiraparani Estuary and off Tuticorin Tamil Nadu, India. International Journal of Earth Sciences and Engineering, 2, 527-543.
- Milner, I. (1962) Sedimentary Petrology. George Allen and Unwin Ltd., London, 643-715.
- Rahman, M.A., Pownceby, M.I., Haque, N., Bruckard, W.J. and Zaman, M.N. (2014) Characterisation of Titanium-Rich Heavy Mineral Concentrates from the Brahmaputra River Basin, Bangladesh. Applied Earth Science (Transactions of the Institution of Mining and Metallurgy B), 123, 222-233.
- Rahman, M.A., Zaman, M.N., Biswas, P.K., Sultana, S. and Nandy, P.K. (2015) Physical Separation for Upgradation of Valuable Minerals: A Study on Sands of the Someswari River. Bangladesh Journal of Scientific and Industrial Research, 50, 53-58. http://dx.doi.org/10.3329/bjsir.v50i1.23810
- Huizing, H.G.J. (1971) A Reconnaissance Study of the Mineralogy of Sand Fractions from East Pakistan Sediments and Soils. Geoderma, 6, 109-133. http://dx.doi.org/10.1016/0016-7061(71)90029-2