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Meteoric calcite cementation: diagenetic response to relative fall in sea-level and effect on porosity and permeability, Las Negras area, southeastern Spain

机译:陨石方解石胶结作用:西班牙东南部拉斯内格拉斯地区对海平面相对下降的成岩作用及其对孔隙度和渗透率的影响

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A dolomitized Upper Miocene carbonate system in southeast Spain contains extensive upper and lower zones of calcite cementation that cut across the stratigraphy. Cement textures including isopachous and circumgranular, which are consistent with phreatic-zone cementation. Cements in the upper cemented zone are non-luminescent, whereas those in the lower cemented zone exhibit multiple bands of luminescent and non-luminescent cements. In the upper cemented zone, isotopic data show two meteoric calcite lines (MCL) with mean delta O-18 at -5.1 parts per thousand and -5.8 parts per thousand VPDB, whereas no clear MCL is defined in the lower cemented zone where mean delta O-18 for calcite cement is at -6.7%. VPDB. delta C-13 values in both cement zones are predominantly negative, ranging from ID to +2%. VPDB, suggestive of carbon from soil gas or decayed organics. Measurements of Tm ice in primary fluid inclusions yield a mode of 0.0 degrees C in both zones, indicating calcite cementation from fresh water. These two zones define the positions of two different paleo-water tables that formed during a relative sea-level fall and erosional downcutting during the Plio-Pleistocene. The upper cemented zone pre-dated the lower cemented zone on the basis of known relative sea-level history. Meteoric calcite cementation reduced porosity and permeability, but measured values are inconsistent with simple filling of open pore space. Each texture, boundstone, grainstone, packstone, wackestone, produces a different relationship between percent calcite cement and porosity/permeability. Distribution of cements may be predictable on the basis of known sea-level history, and the effect of the cementation can be incorporated into subsurface geomodels by defining surfaces of rock boundaries that separate cemented zones from uncemented zones, and applying texture-specific relationships among cementation, porosity and permeability. (C) 2016 Elsevier B.V. All rights reserved.
机译:西班牙东南部的白云石化的中新世碳酸盐岩碳酸盐岩体系包含横跨方岩层的方解石胶结物的上部和下部区域。水泥质地,包括等孔和周围颗粒,与潜水区胶结作用一致。上部胶结区中的水泥是不发光的,而下部胶结区中的水泥则显示出多个发光和不发光胶结带。在上胶合区,同位素数据显示两条方解石线(MCL),平均三角洲O-18分别为-5.1千分和-5.8千分VPDB,而在下胶合区没有明确的MCL定义。方解石水泥的O-18为-6.7%。 VPDB。两个水泥区的δC-13值主要为负,范围从ID到+ 2%。 VPDB,暗示土壤气体或腐烂有机物中的碳。对主要流体包裹体中Tm冰的测量在两个区域中都产生了0.0摄氏度的模式,表明淡水中的方解石胶结。这两个区域定义了两个不同的古地下水位的位置,这些古地下水位是在相对海平面下降和上新世期间的侵蚀性下冲过程中形成的。根据已知的相对海平面历史,上胶结带早于下胶结带。流星方解石胶结降低了孔隙度和渗透率,但测量值与开孔空间的简单填充不一致。在方解石水泥百分比与孔隙度/渗透率之间,每种纹理,粘结石,晶粒石,堆积石,瓦克石都会产生不同的关系。水泥的分布可以根据已知的海平面历史来预测,并且可以通过定义将胶结区与非胶结区分开的岩石边界表面,并在胶结之间应用特定于纹理的关系,将胶结作用纳入地下地质模型中。 ,孔隙率和渗透率。 (C)2016 Elsevier B.V.保留所有权利。

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