Warm and dry palaeoclimate during the Palaeoproterozoic: Evidences from the Papaghni sub-basin of the Cuddapah Basin, India

Authors

  • Atomic Minerals Directorate for Exploration and Research, 1-10-153-156, S.P. Road, Begumpet, Hyderabad 500 016

DOI:

https://doi.org/10.17491/jgsi/2024/173883

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Published

2024-04-01

How to Cite

Basu, H. (2024). Warm and dry palaeoclimate during the Palaeoproterozoic: Evidences from the Papaghni sub-basin of the Cuddapah Basin, India. Journal of Geological Society of India, 100(4), 612–613. https://doi.org/10.17491/jgsi/2024/173883

References

Banerjee, A., Slowakiewicz, M., Majumder, T., Khan, S., Patranabis-Deb, S., Tucker, M.E. and Saha, D. (2019) A Palaeoproterozoic dolomite (Vempalle Formation, Cuddapah Basin, India) showing Phanerozoic-type dolomitization. Precambrian Res., v.328, pp.9-26.

Basu, H., Gangadharan, G.R., Kumar, S., Sharma, U.P., Rai, A.K. and Chaki, A. (2007) Sedimentary facies of Gulcheru Quartzite in the southwestern part of the Cuddapah Basin and their implication in deciphering the depositional environment. Jour. Geol. Soc. India, v.69, pp.347-358.

Basu, H., Sastry, R.S.N., Umamaheswar, K., Achar, K.K. and Parihar, P.S. (2014) Palaeoproterozoic fluvio-aeolian deposits from the lower Gulcheru Formation, Cuddapah Basin, India. Precambrian Res., v.246, pp.321-333.

Basu, H., Rengarajan, M. and Sastry, R.S.N. (2018) Petrographic characteristics of the Gulcheru Formation along the southwestern margin of the Cuddapah basin, Andhra Pradesh: Insights for provenance and tectonic setting. Expl. Res. Atom. Min., v.27, pp.53-74.

Bhattacharjee, P., Goswami, S., Bhagat, S. and Verma, M.B. (2018) Gypsum–anhydrites in 1.9 Ga Vempalle Formation, Cuddapah basin, India: A note on the Palaeoproterozoic environment and diagenetic condition. Jour. Earth Syst. Sci., v.127, pp.1-12 (114).

Cosgrove, G.I.E., Colombera, L., Mountney, N.P., Basilici, G., Mesquita, A.F. and Soares, M.V.T. (2023) Precambrian aeolian systems: A unique record? Precambrian Res., v.392 (107075).

Deng, K., Yang, S. and Guo, Y. (2022) A global temperature control of silicate weathering intensity. Nature Communications, v.13, pp.1-10 (1781).

Garzanti, E., Padoan, M., Ando, S., Resentini, A., Vezzoli, G. and Lustrino, M. (2013) Weathering and Relative Durability of Detrital Minerals in Equatorial Climate: Sand Petrology and Geochemistry in the East African Rift. Jour. Geol., v.121, pp.547-580.

Mao, H-R., Cui, L-F., Zhang, Z-J., Xu, S., Liu, C-Q. and Zhao, Z-Q. (2022) Influence of Monsoon Climate on Chemical Weathering of Granitic Regoliths. Global Biogeochemical Cycles. https://doi.org/10.1029/ 2022GB007362.

Warren, J. (2016) Evaporites. Springer International Publishing AG, In: White, W.M. (Ed.), Encyclopedia of Geochemistry, https://doi.org/ 10.1007/978-3-319-39193-9_100-1.

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