从泥岩的矿物学和地球化学分析得出的摩洛哥外里夫山脉新生代构造沉积演化过程

IF 3.7 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Marine and Petroleum Geology Pub Date : 2024-09-20 DOI:10.1016/j.marpetgeo.2024.107124
Francesco Perri , Francesco Cavalcante , Manuel Martín-Martín , Antonio Sánchez-Navas , Francisco Javier Alcalá
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引用次数: 0

摘要

通过研究泥岩的矿物学和地球化学成分,提供了外里夫链(摩洛哥)新生代构造沉积演化的模型。迄今为止,对外部里夫区(ERZ)缺乏统一的数据和完整而广泛的研究。因此,本研究选取了最具代表性的地层剖面,对整个外里夫区进行了研究。这项工作提供了与里夫造山带生长有关的地球动力演变和源区产状变化的重要信息。尽管仍有许多工作要做,但本研究旨在以一种统一的方法增进对整个 ERZ 西部新生代构造沉积演化的了解,重点是根据新生代泥岩的矿物学和地球化学数据推断出的古地理和古构造演化、古风化和源区。大块矿物学的主要特征是存在方解石、石英和白云石以及闪长岩。长石所占比例很小。粘土矿物主要是混合层伊利石/直闪石(I/S)。伊利石和高岭石含量很少。半透明矿物、混层绿泥石/直闪石(C/S)和绿泥石含量最高。I/S 特征表明三个岩域的热条件不同。化学成分表明,泥岩可描述为碳酸盐与铝硅酸盐成分的混合物。Al/Ti、Th/Cr、Th/Sc、La/Th 和 La/Sc 比值、Cr/V vs. Y/Ni 图、V-Ni-Th∗10 和 La-Th-Sc 三元图均表明,泥岩主要来源于长英岩,而在古新世-始新世的外部内裂谷和中裂谷样本中,岩浆岩的输入更为明显。在新生代,随着阿尔卑斯构造阶段的到来,外部里夫区从一个被动边缘变为一个复杂的前陆系统。一般来说,长英岩的作用应与前陆地区有关,前陆地区包括中阿特拉斯(Middle Atlas)和梅塞塔斯(Mesetas)地块,由结晶域构成。这一边缘地带很可能是外部内拉里夫-美索里夫边界的一个中间狭窄的大洋分支,令人惊讶的是,该分支在古近纪时期开始闭合,从而提供了岩浆岩。这些岩域的古近纪构造活动得到了热成熟度的证实,表明成岩作用已经结束。化学风化指数,如化学蚀变指数(CIA)及其修正值,显示出中等偏上的数值,因此表明古风化条件总体上是中等的,这与主要的 I/S 数量一致。
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Cenozoic tectono-sedimentary evolution of the external rif chain (Morocco) derived from mineralogical and geochemical analysis of mudrocks
A model of the Cenozoic tectono-sedimentary evolution of the External Rif Chain (Morocco) is provided by means of the study of the mineralogical and geochemical composition of mudrocks. To date there was a lack of homogeneous data and of a complete and extensive study of the whole External Rif Zone (ERZ). Therefore, this work shows the study of the whole ERZ where the most representative stratigraphic sections have been selected. This work provides important information about the geodynamic evolution and the variations in source-area provenance related to the growing of the Rif orogenic belt. Although there is still much work to be done, this study aims to improve the knowledge of the Cenozoic tectono-sedimentary evolution of the entire western ERZ with a homogeneous method, with a focus on the paleogeographic and paleotectonic evolution, the paleoweathering and the source areas deduced from mineralogical and geochemical data of the Cenozoic mudrocks. The bulk mineralogy is mainly characterized by the presence of calcite, quartz and dolomite plus ankerite. Feldspars have few percentages. The clay minerals are principally represented by mixed-layer illite/smectite (I/S). Illite and kaolinite are in little amount. Femic minerals, mixed-layer chlorite/smectite (C/S) and chlorite are the most abundant. The I/S features suggest a different thermal condition for the three domains. The chemical composition indicates that the mudrocks can be described as mixtures of carbonates with aluminosilicate components. The Al/Ti, Th/Cr, Th/Sc, La/Th and La/Sc ratios, the Cr/V vs. Y/Ni plot, the V-Ni-Th∗10 and La-Th-Sc ternary diagrams indicate a predominantly felsic source with a minor mafic input more evident in the Paleocene-Eocene samples of the External Intrarif and Mesorif. The External Rif Zones changed in the Cenozoic from a passive margin to a complex foreland system with the incoming of the Alpine tectonic phases. In general, the felsic contribution should be linked to the foreland area consisting in the Middle Atlas and Mesetas massifs made of a crystalline domain. This margin probably presented an intermediate narrow oceanic branch in the External Intrarif-Mesorif boundary that surprisingly should start to close during Paleogene times providing the mafic contribution. This Paleogene tectonic activity in these domains is corroborated by the thermal maturity indicating late diagenesis. The chemical weathering indices, such as the CIA (Chemical index of Alteration) and its modifications, show medium-high values and thus suggest generally moderate paleoweathering conditions in agreement with the predominant amount of I/S.
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来源期刊
Marine and Petroleum Geology
Marine and Petroleum Geology 地学-地球科学综合
CiteScore
8.80
自引率
14.30%
发文量
475
审稿时长
63 days
期刊介绍: Marine and Petroleum Geology is the pre-eminent international forum for the exchange of multidisciplinary concepts, interpretations and techniques for all concerned with marine and petroleum geology in industry, government and academia. Rapid bimonthly publication allows early communications of papers or short communications to the geoscience community. Marine and Petroleum Geology is essential reading for geologists, geophysicists and explorationists in industry, government and academia working in the following areas: marine geology; basin analysis and evaluation; organic geochemistry; reserve/resource estimation; seismic stratigraphy; thermal models of basic evolution; sedimentary geology; continental margins; geophysical interpretation; structural geology/tectonics; formation evaluation techniques; well logging.
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