巴基斯坦东苏莱曼山脉白垩系Moro组Rakhi峡谷的沉积学和物源分析

IF 1 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Muhammad Jehangir Khan, S. Ghazi, M. Mehmood, A. Yazdi, A. Naseem, Umair Serwar, Arsalan Zaheer, Hadayat Ullah
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引用次数: 5

摘要

对德拉加齐汗拉基纳拉剖面白垩系莫罗组进行了详细的研究,探讨了沉积学和物源。本文介绍了苏莱曼山脉东部Rakhi Nala剖面白垩系Moro组岩相变化、沉积环境及物源分析。研究组厚度110 ~ 140米,以细粒至粗粒砂岩为主,含少量粉砂岩、泥岩(粘土岩、页岩)、灰岩。摩罗组最上层地层由含铁型胶结物的砂岩组成。通过对莫罗组沉积环境的岩石学研究,确定了从三角洲到海相(三角洲平原-三角洲前缘)的12种岩相。砂岩岩相分析显示,石英单晶多晶并存,长石较少;赤铁矿、磁铁矿和海绿石等重矿物的含量可以忽略不计。碎屑矿物组成表明,摩罗组砂岩为岩屑岩。QFL图砂岩的模态组成为q66% F 0.3% L 33.7%, QmFLt图砂岩的模态组成为QM, 57% F 0.23% L 43.77%。整体平均成分为Q 61.5% F 0.27% L 38.7%。共研究了37个薄片样品进行物源分析,其中27个样品被认为是岩屑岩(这表明再生或克拉通内部起源),鉴定出8个石英砂岩类别,2个样品属于亚岩屑岩类别(石英再生源区)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sedimentological and provenance analysis of the Cretaceous Moro formation Rakhi Gorge, Eastern Sulaiman Range, Pakistan
The Cretaceous Moro Formation from the Rakhi Nala section Dera Ghazi Khan has been studied in detail to investigate the Sedimentology and provenance. This paper describes the litho-facies changes, depositional environment, and provenance analysis of the Cretaceous Moro Formation from the Rakhi Nala section, eastern Sulaiman Range. The studied Formation is 110-140 meters thick and consists mainly of fine to coarse-grained sandstone,  with minor-siltstone, mudstone (claystone, shale), and limestone. The uppermost beds of the Moro Formation are consist of sandstone with iron types of cement. Twelve lithofacies have been identified based on a petrographic investigation related to the depositional environment of the Moro Formation ranging from deltaic to marine setting (Delta Plain-Delta front). Petrographic analysis of sandstone reveals the presence of quartz both, mono-crystalline and poly-crystalline, less feldspar; heavy minerals like hematite and magnetite, and glauconite were found in negligible amounts. Detrital mineral composition shows that in Moro Formation, the sandstone shows a litharenite. Modal composition of the sandstone from the QFL diagram was Q 66% F 0.3% L 33.7% and that of the QmFLt diagram was QM, 57% F 0.23% L 43.77%. The overall average composition is Q 61.5% F 0.27% L 38.7%. A total of 37 thin-sections are studied for provenance analysis, out of which twenty-seven samples are considered as Litharenite (this shows recycled, or craton interior origin), eight Quartz arenite categories are identified and two samples are fall in the sublitharenites category (Quarts recycled source area).
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来源期刊
Iranian Journal of Earth Sciences
Iranian Journal of Earth Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
12.50%
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