华南地块西部下志留统富有机质海相泥岩构造控制的有机质富集破坏机制

IF 1.1 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS
Tong Sun, Yiqing Zhu, B. Ran, Ke Liang, C. Luo, Yuyue Han
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引用次数: 0

摘要

这种有机质富集的破坏机制对改善泥岩沉积构造体系具有重要作用。对于华南地块西部下志留统海相泥岩,有机质富集的破坏机制尚不清楚,以往的研究忽略了古地理和空间差异的控制。层理是泥岩中一种典型的沉积构造,泥岩中不同类型的层理可以反映一系列沉积环境。透镜状层叠是海相泥岩中一种常见的层叠类型,主要发生在有机贫泥岩中(Schieber et al., 2010)。透镜状层叠由不同组成的排列透镜组成。透镜状层压的成因至今仍有争议,需要综合沉积学、岩石学和古地理学的多学科研究。本研究的主要目的是:(1)解释龙马溪海相泥岩透镜状层理的形成机制;(2)探讨透镜状层理对有机质破坏的意义。研究结果不仅有助于全面认识志留系海相泥岩的破坏机制,而且为海相泥岩的沉积过程提供了新的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Destruction mechanism of organic matter enrichment controlled by tectonism in the Lower Silurian organic-rich marine mudstone in the western South China Block
This destruction mechanism of organic matter enrichment plays an important role in improving the mudstone sedimentary structure system. For the lower Silurian marine mudstone in the western South China Block, the destruction mechanism of organic matter enrichment is unclear, with previous studies ignoring the control from paleogeography and spatial differences. Lamination is a typical sedimentary structure in mudstone and different types of lamination in mudstones can reflect a range of depositional environments. Lenticular lamination, composed of arranged lenses of variable composition, is a common type of lamination in marine mudstone and mainly occurs in organic-lean mudstone (Schieber et al., 2010). The origin of lenticular lamination remains controversial, and a multidisciplinary approach is needed that integrates sedimentology, petrography, and paleogeography. The main objectives of this approach are to (1) interpret the formation mechanism of lenticular laminations in the Longmaxi marine mudstone, and (2) discuss the significance of lenticular lamination to organic matter destruction. The results not only allow for a complete understanding of the destruction mechanisms of the Silurian marine mudstones but also provide new insights into the sedimentary processes of marine mudstone.
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来源期刊
CiteScore
2.50
自引率
8.30%
发文量
126
期刊介绍: ***Jointly published by the American Association of Petroleum Geologists (AAPG) and the Society of Exploration Geophysicists (SEG)*** Interpretation is a new, peer-reviewed journal for advancing the practice of subsurface interpretation.
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