Decoding regressive depositional history from the Neoproterozoic Panium Sandstone Formation, Kurnool Group, India using ‘sequence stratigraphy’ analysis and detrital zircon geochronology

IF 2.7 2区 地球科学 Q1 GEOLOGY
Partha Pratim Chakraborty , Rasikh Barkat , Aditi Sharma , Kaushik Das , Tomoyuki Shibata
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Abstract

The Neoproterozoic Panium Sandstone Formation of the Kurnool Group (India) offers a unique scope for understanding regressive depositional history in a Neoproterozoic clastic shoreline. It is divided into two ‘Systems Tracts’ namely forced regression and lowstand. Process-based facies and paleo-environmental analysis identified twelve different facies types; grouped under four facies associations (FA I–IV) belonging to both continental and shallow-marine domains viz. distal braided fluvial, swash bar-foreshore runnel, upper shoreface bar-trough, and lower shoreface bar-interbar. Whereas the fluvial deposit (FA I), sharply and erosionally overlying the argillaceous shelf succession of the Owk shelf shale, represents the product of forced regression, the wave-dominated shallow marine deposits (FA II, III and IV) record the depositional history of lowstand in the coastline. A basin ward transition from unconformity (base of FA I) to correlative conformity (base of shallow marine deposits FA II, III, and IV) is documented. The shoreline had a north-northwest to south-southeast alignment and the north-eastward flowing fluvial system met the shoreline at a high angle. Detrital zircon geochronology from the Panium fluvial sandstone allowed documentation of Paleoproterozoic (~2050 Ma–1800 Ma) and Mesoproterozoic (~1500 Ma to ~1200 Ma) age clusters, in addition to earlier documented age clusters from the Banganapalle alluvial sandstone present at the basal part of Kurnool succession. The new age data suggest an addition of new provenances and in turn, tectonic intervention behind the regression in the Kurnool coastline that triggered Panium deposition. Further, the Paleoproterozoic age cluster, obtained from the Panium fluvial deposit, helped in the justification of solitary zircon grain occurrences within the Owk Shale, as described in earlier studies.

Abstract Image

利用 "层序地层学 "分析和碎屑锆石地质年代学,解码印度库尔努尔组新新生代帕尼姆砂岩层的回归沉积史
印度库尔努尔组新新生代帕尼姆砂岩层为了解新新生代碎屑岩海岸线的回归沉积历史提供了独特的视角。该地层分为两个 "系统带",即强制回归带和低地层带。基于过程的岩相和古环境分析确定了 12 种不同的岩相类型;分为四个岩相组合(FA I-IV),分别属于大陆和浅海领域,即远端辫状河冲积、冲刷条带-前滩迳流、上岸面条带-槽沟和下岸面条带-间条。溪流沉积(FA I)急剧侵蚀覆盖在鄂温克陆棚页岩的箭质陆棚演替之上,是强迫回归的产物,而以波浪为主的浅海沉积(FA II、III 和 IV)则记录了海岸线低洼处的沉积历史。记录了从不符层(FA I 的基底)到相关符合层(浅海沉积层 FA II、III 和 IV 的基底)的盆地过渡。海岸线呈北北西至南东南走向,北东流向的河流系统与海岸线呈高角度交汇。从 Panium 流积砂岩中提取的碎屑锆石地质年代学资料,除了早先从 Kurnool 演替基底部分的 Banganapalle 冲积砂岩中提取的年代群外,还记录了古近纪(约 2050 年至 1800 年)和中新生代(约 1500 年至约 1200 年)的年代群。新的年龄数据表明,库尔努尔海岸线的倒退增加了新的产地,反过来,引发 Panium 沉积的背后是构造的干预。此外,从 Panium 流体沉积中获得的古近纪年龄群有助于证明早期研究中描述的欧克页岩中出现的单独锆石颗粒的合理性。
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来源期刊
Sedimentary Geology
Sedimentary Geology 地学-地质学
CiteScore
5.10
自引率
7.10%
发文量
133
审稿时长
32 days
期刊介绍: Sedimentary Geology is a journal that rapidly publishes high quality, original research and review papers that cover all aspects of sediments and sedimentary rocks at all spatial and temporal scales. Submitted papers must make a significant contribution to the field of study and must place the research in a broad context, so that it is of interest to the diverse, international readership of the journal. Papers that are largely descriptive in nature, of limited scope or local geographical significance, or based on limited data will not be considered for publication.
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