印度次大陆的马里诺冰川作用--剖析与全球影响

H.N. Bhattacharya
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引用次数: 0

摘要

对代表新新生代-下寒武统马尔瓦尔超群最底层单元的波卡兰巨石床进行的详细沉积学分析清楚地表明了其冰川起源。冰川沉积物被解释为与冰接触的海底扇形沉积物。根据马尔瓦超群沉积物和夹层火成岩沉积物中的非铁质和继承锆石群,可以为波卡兰巨石床设想一个冷元古代的马里亚低温层。冰川后沉积演替中保存完好的埃迪卡拉纪元素也支持马尔瓦超群的冷元古代至早寒武纪时代。马尔瓦超群底部的冰川沉积加强了所研究沉积物与小喜马拉雅布莱尼-克罗尔-塔尔沉积物和阿曼哈格夫超群之间的区域相关性。现有的马拉尼火成岩套件的锆石年龄和古地磁数据,以及马尔瓦超群的马里诺冰川沉积物、锆石碎片年龄和埃迪卡拉化石元素,为新近纪地球历史增添了重要信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Marinoan glaciation in the Indian subcontinent - Anatomy and global implications

Detailed sedimentological analysis of the Pokaran Boulder Bed, representing the most basal unit of the Neoproterozoic-Lower Cambrian Marwar Supergroup, clearly indicates its glacial origin. The glacial sediments are interpreted as an ice-contact submarine fan deposit. Based on the detrital and inherited zircon population of the Marwar Supergroup sediments and interlayered pyroclastic deposits, a Marinoan cryochron of the Cryogenian Period is envisaged for the Pokaran Boulder Bed. The well-preserved Ediacaran elements in the post-glacial sedimentary succession also support a Cryogenian to Early Cambrian age of the Marwar Supergroup. The glacial deposition at the base of the Marwar Supergroup strengthens the regional correlation between the studied sediments with the Lesser Himalayan Blaini-Krol-Tal sediments and the Haqf Supergroup of Oman. The available zircon ages and paleomagnetic data of the Malani Igneous suite, along with the Marinoan glacial deposits, detrital zircon ages, and Ediacaran fossil elements of the Marwar Supergroup add significant information to the Neoproterozoic Earth history.

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