How bedding-parallel fractures affect fluid activity in a relatively closed lacustrine shales system: Evidence from calcite veins

IF 3.7 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Zilong Li , Kelai Xi , Xiaobing Niu , Xiujuan Wang , Wenzhong Ma , Xiao Hui , Jiangyan Liu , Changyu Fan , Miruo Lin , Keyu Liu , Yingchang Cao
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引用次数: 0

Abstract

The redistribution of materials and elements in rocks, the transport of hydrocarbon, the metamorphic reaction of lithosphere rheology, and the sequestration of greenhouse gases all depend on fluid activity. In a relatively closed lacustrine shales system that has experienced strong physical and chemical compaction, there has been not fully understood how fluid activity channels are generated due to few records of fluid activity. To investigate these processes, we present the petrography, isotope geochemistry, cathodoluminescence, fluid inclusions, electron probe microanalysis, and rare earth elements of bedding-parallel calcite veins (BPCVs) found in the lacustrine organic-rich shales of the Chang 73 sub-member of the Yanchang Formation in Ordos Basin. Our investigations show that the opening of bedding-parallel fractures (BPFs) in a relatively closed lacustrine shales system can significantly promote fluid flow and fluid-rock interactions. Three distinct stages of BPCVs can been identified: Cal-1, Cal-2, and Cal-3. Cal-1 was the result of active fracturing of host rocks under the crystallization force in the process of in-situ recrystallization after pressure dissolution of inorganic micrite carbonate minerals. The δ13C values of Cal-2 is consistent with the values of organic carbon generated by thermal decarboxylation, indicating that the BPFs may be opened under the hydrocarbon generation overpressure and promote hydrocarbon expulsion. Cal-3 is associated with the micro-thrust fault structure, δEu value is a positive anomaly, which is significantly different from host rocks, reflecting that the BPFs opened under the horizontal tectonic compression and then acted as flow channels for organic fluid and deep hydrothermal fluid. This study emphasizes that the opening of BPFs in a relatively closed lacustrine shales system has obvious multi-stage characteristics, which significantly promotes fluid flow and material exchange, affects the diagenetic evolution and hydrocarbon expulsion, and is an important response to the multi-scale and episodic fluid activity in sedimentary basins.
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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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