首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Facies, dissolution seams and stable isotope compositions of the Rohtas Limestone (Vindhyan Supergroup) in the Son valley area, central India
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Facies, dissolution seams and stable isotope compositions of the Rohtas Limestone (Vindhyan Supergroup) in the Son valley area, central India

机译:印度中部桑河谷地区Rohtas石灰石(Vindhyan超群)的相,溶解接缝和稳定同位素组成

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The early Mesoproterozoic Rohtas Limestone in the Son valley area of central India represents an. overall shallowing-upward carbonate succession. Detailed facies analysis of the limestone reveals outer- to inner-shelf deposition in an open marine setting. Wave-ripples, hummocky cross stratifications and edgewise conglomerates argue against a deep marine depositional model for the Rohtas Limestone proposed earlier. Stable isotope analysis of the limestone shows that δ~(13)C and δ~(18)O values are compatible with the early Mesoproterozoic open seawater composition. The ribbon limestone facies in the Rohtas Limestone is characterized by micritic beds, each decoupled in a lower band enriched and an upper band depleted in dissolution seams. Band-wise isotopic analysis reveals systematic short-term variations. Comparative enrichment of the heavier isotopes in the upper bands is attributed to early cementation from sea water and water derived from the lower band undergoing dissolution because of lowering of pH at depth. The short-term positive shifts in isotopic compositions in almost every upward gradational transition from a seamed band to a non-seamed band support the contention that dissolution seams here are of early diagenetic origin, although their formation was accentuated under overburden pressure.
机译:印度中部Son谷地区的中元古代Rohtas石灰岩代表着。总体上是浅层向上碳酸盐岩演替。石灰岩的详细相分析表明,在开放的海洋环境中,从上到下的层架沉积。波浪状波纹,高高的交叉分层和边缘性砾岩层与先前提出的Rohtas石灰石的深海沉积模型背道而驰。石灰石的稳定同位素分析表明,δ〜(13)C和δ〜(18)O值与早期中元古代开放海水成分相容。 Rohtas石灰岩中的带状石灰岩相的特征是微晶岩床,每个岩床在富集的低层带和溶蚀层中的高层带上解耦。带状同位素分析揭示了系统的短期变化。上部带中较重同位素的相对富集归因于海水的早期胶结作用和下部带所产生的水由于深度pH降低而发生溶解。从接缝带到非接缝带的几乎每个向上的渐变过渡期,同位素组成的短期正向变化都支持这样的论点,即溶蚀缝是早期成岩作用的,尽管它们的形成在上覆压力下加剧了。

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