首页> 外文OA文献 >Geochemical and Sm-Nd isotopic characteristics of the Late Archaean-Palaeoproterozoic Dhanjori and Chaibasa metasedimentary rocks, Singhbhum craton, E. India : implications for provenance, and contemporary basin tectonics
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Geochemical and Sm-Nd isotopic characteristics of the Late Archaean-Palaeoproterozoic Dhanjori and Chaibasa metasedimentary rocks, Singhbhum craton, E. India : implications for provenance, and contemporary basin tectonics

机译:晚太古代 - 古元古代Dhanjori和Chaibasa变质沉积岩的地球化学和sm-Nd同位素特征,singhbhum craton,E。印度:对物源的影响和当代盆地构造

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摘要

In significant contrast to other cratonic blocks of India, the Singhbhum cratonic successions record contin-uous depositional record from the Palaeoarchaean to Mesoproterozoic. Although the sedimentary faciescharacteristics and mode of stratigraphic sequence building of the Dhanjori and Chaibasa Formations arewell known, sedimentary geochemistry, provenance and tectonic milieu of deposition of these two for-mations are hitherto unknown. The current manuscript presents geochemical and Sm–Nd isotopic datafrom the Dhanjori and Chaibasa Formations for the first time and combine previous sedimentological datawith the goal to expand the framework for understanding the depositional and tectonic setting of thesetwo formations. The Sm–Nd isotopic data for the Chaibasa clastics is unambiguous with respect to proven-ance. Average εNd(t = 2.2 Ga) = −0.8 ± 1.0 and average Nd model age (TDM) = 2.51 ± 0.08 Ga with average147Sm/144Nd ratios = 0.1114 ± 0.0041 for phyllites and quartzites indicate an extremely homogeneoussource signature consistent with a late Archaean “juvenile” crustal provenance, possibly a dominantlyupper crustal provenance. The Sm–Nd isotopic data from the older Dhanjori Formation also indicatebroadly similar provenance as comparable lithologies in the younger Chaibasa Formation. Our Sm–Ndisotopic data is entirely consistent with the previous sedimentological data and confirms a terrestrial, rift-dominated tectonic setting for the Dhanjori Formation (proximal sources, poorly mixed provenance) anda marginal marine to offshore setting for the more homogeneous Nd isotopic signature of the ChaibasaFormation (distal sources, well mixed provenance).
机译:与印度的其他克拉通块体形成鲜明对比的是,辛格邦克拉通演替记录了从古古宙到中元古代的连续沉积记录。尽管Dhanjori和Chaibasa地层的沉积相特征和地层层序构造方式是众所周知的,但这两个形态的沉积地球化学,物源和构造环境迄今仍是未知的。本手稿首次展示了Dhanjori和Chaibasa地层的地球化学和Sm-Nd同位素数据,并将先前的沉积学数据与目标相结合,以扩展框架以了解这两个地层的沉积和构造环境。柴巴沙碎屑的Sm-Nd同位素数据在物源方面是明确的。平均εNd(t = 2.2 Ga)= -0.8±1.0,平均Nd模龄(TDM)= 2.51±0.08 Ga,橄榄石和石英岩的平均147Sm / 144Nd比= 0.1114±0.0041,表明其源极均匀,与古生代晚期一致。幼体地壳起源,可能是占主导地位的上地壳起源。来自较老Dhanjori组的Sm-Nd同位素数据也表明与较年轻的Chaibasa组的可比较岩性具有广泛相似的物源。我们的Sm–Nd同位素数据与先前的沉积学数据完全一致,并证实了Dhanjori组的陆相,裂谷为主的构造环境(近源,混杂物源差)和边缘至海洋的近海环境,使Nd同位素特征更为均一。 ChaibasaFormation(遥远的来源,混杂的起源)。

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