Petrogenesis and Metallogenic Evolution of Leucogranites from the Paleoproterozoic Malanjkhand Granitoids, Central India
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Publisher
Springer Science and Business Media LLC
Subject
Geology
Link
https://link.springer.com/content/pdf/10.1007/s12594-022-2231-7.pdf
Reference92 articles.
1. Arya, D., Gupta, S., Kumar, S. and Xu, X. (2021) Geochemistry and U-Pb-Lu-Hf zircon isotopes of Cu (±Mo±Au) hosted granitoids of Malanjkhand pluton, Central India: implications on petrogenesis, source, and crustal evolution. Lithos, v.402–403, 106153. doi: https://doi.org/10.1016/j.lithos.2021.106153
2. Arya, D., Guupta, S., Kumar, S., Broska, I. and Vaculovic, T. (2019) Morphology and chemistry of zircons from the Paleoproterozoic Cu (±Mo±Au) hosting granitoids of Malanjkhand mine area, Central India. Jour. Geol. Soc. India, v.93, pp.257–262.
3. Asokan, A.D., Elangovan, E., Vishwakarma, N., Hari, K.R. and Ram Mohan, M. (2020) Petrogenesis of the Kanker granites from the Bastar Craton: implications for crustal growth and evolution during the Archean-Proterozoic transition. Front. Earth Sci., v.8, pp.212. doi:https://doi.org/10.3389/feart.2020.00212.
4. Asrat, A. and Barbey, P. (2003) Petrology, geochronology and Sr-Nd isotopic geochemistry of the Konso pluton, south-western Ethiopia: implications for transition from convergence to extension in the Mozambique Belt. Internat. Jour. Earth Sci., v.92, pp.873–890.
5. Audetat, A. (2010) Source and evolution of molybdenum in the porphyry Mo(-Nb) deposit at Cave Peak, Texas. Jour. Petrol., v.51, pp.1739–1760.
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