Links between anhydrite precipitation and dolomitization during cycles of sea level change: Insights from the Late Jurassic Arab Formation, Abu Dhabi, United Arab Emirates

IF 3.7 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Marine and Petroleum Geology Pub Date : 2024-09-14 DOI:10.1016/j.marpetgeo.2024.107106
L. Marheni , M. Alsuwaidi , S. Morad , A. Koeshidayatullah , A. Herlambang , B. Al Muhairy , K. Al Tameemi
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Abstract

Despite extensive research in the field of evaporative dolomitization, the close link between anhydrite precipitation and dolomitization is still poorly explored within the context of sequence stratigraphy. This comprehensive diagenetic and sequence stratigraphic study of the Late Jurassic Arab Formation, Abu Dhabi, United Arab Emirates, provides important insights into the relationship between anhydrite precipitation and dolomitization within the 2nd, 3rd, and 4th orders of relative sea-level cycles. Initial good connectivity between the inner ramp and open sea during 2nd order late transgressive-early regression cycles accounts for the limestone-dominated lithology with limited anhydrite formation. Conversely, the following progressive 2nd order fall in the relative periodic restriction of the inner platform during 2nd order early regressive cycles (early highstand systems tracts, HST) caused seepage reflux dolomitization and the precipitation of scattered to pervasive anhydrite cement in the dolostones. Variations in the extent of dolomitization were controlled by the permeability and reactivity of the precursor limestones, resulting in the formation of what is known as dolomite fingers. The most laterally extensive dolomitization during late 2nd order regression resulted in the formation of microcrystalline dolostones with nodular and chickenwire anhydrite by a combination of evaporative sabkha pumping and the seepage reflux of lagoon brines. The δ1³C and δ1⁸O of calcite and dolomite reveal the influence of degree of restriction of the inner ramp, and related extent of seawater evaporation. The lower limestone-dominated interval (3rd order HST) is characterized by lower δ1³C values (+2.0‰ to +2.5‰) owing to periodic restriction of seawater circulation, which resulted in oxidation of organic matter during aging of the seawater. This study approach provides important insights into the genetic links between interbedded platform limestones, dolostones, and anhydrites, and hence a better understanding and prediction of reservoir quality distribution and compartmentalization.

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海平面变化周期中无水石膏沉淀与白云石化之间的联系:来自阿拉伯联合酋长国阿布扎比晚侏罗世阿拉伯地层的启示
尽管在蒸发白云石化领域开展了广泛的研究,但在层序地层学的背景下,对无水石膏沉淀与白云石化之间的密切联系仍然缺乏深入探讨。这项对阿拉伯联合酋长国阿布扎比晚侏罗世阿拉伯地层进行的综合成因和层序地层学研究,为研究相对海平面周期第二、第三和第四阶中无水石膏沉淀与白云石化之间的关系提供了重要见解。在第 2 阶晚期横断-早期回归周期中,内部斜坡与公海之间最初具有良好的连通性,这也是石灰岩为主的岩性与有限的无水岩形成的原因。相反,在二阶早期回归周期(早期高台系统道,HST)中,内平台的相对周期性限制随之逐渐下降,导致渗流回流白云石化,并在白云石中析出分散到普遍的无水石膏胶结物。白云石化程度的变化受前生灰岩的渗透性和反应性的控制,从而形成了所谓的白云石指。在二阶回归晚期,白云石化的横向范围最广,在蒸发性沙布卡抽水和泻湖盐水渗流回流的共同作用下,形成了微晶白云石,并伴有结核状和鸡丝状无水石膏。方解石和白云石的δ1³C 和δ1⁸O 揭示了内部斜坡的限制程度和相关海水蒸发程度的影响。由于海水循环受到周期性限制,导致海水老化过程中有机物氧化,以石灰岩为主的下部区间(3阶 HST)的δ1³C值较低(+2.0‰至+2.5‰)。这种研究方法为了解层间平台灰岩、白云石和无水岩之间的遗传联系提供了重要的启示,从而更好地理解和预测储层质量分布和分区。
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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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