Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India
Detrital zircon and monazite dating of clastic rocks in the Mesozoic Kutch Basin at the western continental margin of India reveals predominant sediment derivation from rocks of Neoproterozoic Pan-African orogeny, followed by those of Cambro-Ordovician Bhimphedian (or Kurgiakh) orogeny and 850–1000...
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ELSEVIER
2020
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| Online Access: | http://hdl.handle.net/20.500.11937/84216 |
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| author | Chaudhuri, A. Das, K. Banerjee, S. Fitzsimons, Ian |
| author_facet | Chaudhuri, A. Das, K. Banerjee, S. Fitzsimons, Ian |
| author_sort | Chaudhuri, A. |
| building | Curtin Institutional Repository |
| collection | Online Access |
| description | Detrital zircon and monazite dating of clastic rocks in the Mesozoic Kutch Basin at the western continental margin of India reveals predominant sediment derivation from rocks of Neoproterozoic Pan-African orogeny, followed by those of Cambro-Ordovician Bhimphedian (or Kurgiakh) orogeny and 850–1000 Ma rocks, with subordinate input from rocks of 700–800 Ma, 1500–1600 Ma, 2400–2500 Ma and 2800–3300 Ma. This finding refutes the existing idea regarding the predominant Mesoproterozoic source inferred for this basin. The dominance of southwesterly palaeocurrent data of Mesozoic rocks in Kutch Basin rules out sediment supply from south or west. Th/U ratios of detrital zircon grains indicate predominantly magmatic and subordinately metamorphic source rock. Petrographic data, particularly the QFR plot supports this interpretation of source rock. Rocks belonging to the Pan-African orogeny are poorly exposed in northwestern India while isolated outcrops of peralkaline granites in the Himalayan region bear testimony of the Bhimphedian orogeny. While the paucity of records of the Pan-African orogeny in western India possibly relates to either burial under the Deccan Flood Basalts or extensive erosion during Mesozoic greenhouse climate, the dearth of rocks of Bhimphedian orogeny results from its occurrence along the present-day Himalayan thrust belt. The absence of detrital zircon grains younger than 458 Ma indicates that post-Ordovician tectono-thermal events skipped the source area. The large gap between youngest detrital zircon and the depositional age of the Mesozoic sediments, suggests long-distance sediment transport as well as sediment recycling. This study, therefore, indicates the existence of widespread younger magmatic rocks to the north during the deposition of Mesozoic of Kutch. |
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| institution | Curtin University Malaysia |
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| language | English |
| last_indexed | 2025-11-14T11:22:20Z |
| publishDate | 2020 |
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| spelling | curtin-20.500.11937-842162021-12-10T00:51:53Z Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India Chaudhuri, A. Das, K. Banerjee, S. Fitzsimons, Ian Science & Technology Physical Sciences Geosciences, Multidisciplinary Geology Detrital zircon geochronology U-Pb dating U-Th-total Pb monazite Pan-African orogeny Bhimphedian orogeny Kutch Basin JURASSIC JHURAN FORMATION EAST EUROPEAN CRATON U-PB AGES GEOCHRONOLOGICAL CONSTRAINTS COMPOSITIONAL EVOLUTION SOUTHWEST RAJASTHAN CRUSTAL EVOLUTION ARAVALLI CRATON GRANITIC-ROCKS WESTERN INDIA Detrital zircon and monazite dating of clastic rocks in the Mesozoic Kutch Basin at the western continental margin of India reveals predominant sediment derivation from rocks of Neoproterozoic Pan-African orogeny, followed by those of Cambro-Ordovician Bhimphedian (or Kurgiakh) orogeny and 850–1000 Ma rocks, with subordinate input from rocks of 700–800 Ma, 1500–1600 Ma, 2400–2500 Ma and 2800–3300 Ma. This finding refutes the existing idea regarding the predominant Mesoproterozoic source inferred for this basin. The dominance of southwesterly palaeocurrent data of Mesozoic rocks in Kutch Basin rules out sediment supply from south or west. Th/U ratios of detrital zircon grains indicate predominantly magmatic and subordinately metamorphic source rock. Petrographic data, particularly the QFR plot supports this interpretation of source rock. Rocks belonging to the Pan-African orogeny are poorly exposed in northwestern India while isolated outcrops of peralkaline granites in the Himalayan region bear testimony of the Bhimphedian orogeny. While the paucity of records of the Pan-African orogeny in western India possibly relates to either burial under the Deccan Flood Basalts or extensive erosion during Mesozoic greenhouse climate, the dearth of rocks of Bhimphedian orogeny results from its occurrence along the present-day Himalayan thrust belt. The absence of detrital zircon grains younger than 458 Ma indicates that post-Ordovician tectono-thermal events skipped the source area. The large gap between youngest detrital zircon and the depositional age of the Mesozoic sediments, suggests long-distance sediment transport as well as sediment recycling. This study, therefore, indicates the existence of widespread younger magmatic rocks to the north during the deposition of Mesozoic of Kutch. 2020 Journal Article http://hdl.handle.net/20.500.11937/84216 10.1016/j.gr.2019.10.015 English http://creativecommons.org/licenses/by-nc-nd/4.0/ ELSEVIER fulltext |
| spellingShingle | Science & Technology Physical Sciences Geosciences, Multidisciplinary Geology Detrital zircon geochronology U-Pb dating U-Th-total Pb monazite Pan-African orogeny Bhimphedian orogeny Kutch Basin JURASSIC JHURAN FORMATION EAST EUROPEAN CRATON U-PB AGES GEOCHRONOLOGICAL CONSTRAINTS COMPOSITIONAL EVOLUTION SOUTHWEST RAJASTHAN CRUSTAL EVOLUTION ARAVALLI CRATON GRANITIC-ROCKS WESTERN INDIA Chaudhuri, A. Das, K. Banerjee, S. Fitzsimons, Ian Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title | Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title_full | Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title_fullStr | Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title_full_unstemmed | Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title_short | Detrital zircon and monazite track the source of Mesozoic sediments in Kutch to rocks of Late Neoproterozoic and Early Palaeozoic orogenies in northern India |
| title_sort | detrital zircon and monazite track the source of mesozoic sediments in kutch to rocks of late neoproterozoic and early palaeozoic orogenies in northern india |
| topic | Science & Technology Physical Sciences Geosciences, Multidisciplinary Geology Detrital zircon geochronology U-Pb dating U-Th-total Pb monazite Pan-African orogeny Bhimphedian orogeny Kutch Basin JURASSIC JHURAN FORMATION EAST EUROPEAN CRATON U-PB AGES GEOCHRONOLOGICAL CONSTRAINTS COMPOSITIONAL EVOLUTION SOUTHWEST RAJASTHAN CRUSTAL EVOLUTION ARAVALLI CRATON GRANITIC-ROCKS WESTERN INDIA |
| url | http://hdl.handle.net/20.500.11937/84216 |