首页> 外文OA文献 >Sources of Sr and S in Aluminum-Phosphate–Sulfate Minerals in Early–Middle Triassic Sandstones (Iberian Ranges, Spain) and Paleoenvironmental Implications for the West Tethys
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Sources of Sr and S in Aluminum-Phosphate–Sulfate Minerals in Early–Middle Triassic Sandstones (Iberian Ranges, Spain) and Paleoenvironmental Implications for the West Tethys

机译:中早三叠世砂岩(西班牙伊比利亚山脉)的磷酸铝-硫酸盐矿物中的Sr和S的来源及其对西特提斯的古环境意义

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摘要

Aluminum-phosphate–sulfate (APS) minerals, formed during early diagenesis in relation to acid meteoric waters, are the main host of Sr and S in the Early–Middle Triassic continental sandstones of the Iberian Ranges (east of the Iberian Peninsula). The sources of these elements and the effects of paleoenvironmetal changes on these sources and on the formation of APS minerals during Early–Middle Triassic times, were established on the basis of Sr and S isotopic analyses. The S and Sr data (d34S V-CDT = +11 to +14% and 87Sr/86Sr = 0.7099–0.7247, respectively) can be interpreted as resulting from mixing of different sources. Strontium was sourced from the dissolution of pre-existing minerals like K-feldspar and clay minerals inherited from the source areas, causing high radiogenic values. However, the isotopic signal must also be influenced by other sources, such as marine or volcanic aerosol that decreased the total 87Sr/86Sr ratios. Marine and volcanic aerosols were also sources of sulfur, but the d34S was lowered by dissolution of pre-existing sulfides, mainly pyrite. Pyrite dissolution and volcanic aerosols would also trigger the acid conditions required for the precipitation of APS minerals. APS minerals in the study area are found mainly in the Cañizar Formation (Olenekian?–Aegian), which has the lowest 87Sr/86Sr ratios. The lower abundance of APS minerals in the Eslida Formation (Aegian–Pelsonian) may indicate change in the acidity of pore water towards more alkaline conditions, while the increased 87Sr/86Sr ratios imply decreased Sr input from volcanic activity and/or marine aerosol inputs during Anisian times. Therefore, the decrease in abundance of APS minerals from the Early to Middle Triassic and the variations in the sources of Sr and S are indicative of changes in paleoenvironmental conditions during the beginning of the Triassic Period. These changes from acid to more alkaline conditions are also coincident with the first appearance of carbonate paleosols, trace fossils, and plant fossils in the upper part of the Cañizar Formation (and more in the overlying Eslida Formation) and mark the beginning of biotic recovery in this area. The presence of APS minerals in other European basins of the Western Tethys (such as the German Basin, the Paris Basin and the southeastern France and Sardinia basins) could thus also indicate that unfavorable environmental conditions caused delay in biotic recovery in those areas. In general, the presence of APS minerals may be used as an indicator of arid, acidic conditions unfavorable to biotic colonization.
机译:早成岩过程中形成的与酸性大气水有关的磷酸铝硫酸盐矿物,是伊比利亚山脉(伊比利亚半岛东部)中三叠世早期-中三叠世大陆砂岩中Sr和S的主要宿主。在Sr和S同位素分析的基础上,确定了这些元素的来源以及古环境金属变化对这些来源的影响以及对三叠纪中早期的APS矿物形成的影响。 S和Sr数据(d34S V-CDT = +11至+ 14%和87Sr / 86Sr = 0.7099–0.7247分别)可以解释为混合不同来源产生的结果。锶的产生源于先前存在的矿物(如钾长石)的溶解以及从源区继承的粘土矿物,从而导致了高放射价值。但是,同位素信号也必须受到其他来源的影响,例如海洋或火山气溶胶,它们降低了总的87Sr / 86Sr比。海洋和火山气溶胶也是硫的来源,但是d34S的降低是由于溶解了预先存在的硫化物,主要是黄铁矿。硫铁矿的溶解和火山气溶胶也会触发APS矿物沉淀所需的酸性条件。研究区的APS矿物主要存在于Cañizar组(Olenekian?–Aegian),其最低的87Sr / 86Sr比。埃斯利达组(Aegian–Pelsonian)中APS矿物含量较低可能表明孔隙水的酸度向更碱性的方向变化,而增加的87Sr / 86Sr比值则暗示火山活动和/或海洋气溶胶输入过程中Sr输入减少。阿尼西亚时代。因此,从早三叠世到中三叠世,APS矿物的丰度下降,以及Sr和S来源的变化,表明了三叠纪初期古环境条件的变化。从酸性到更碱性的这些变化还与Cañizar组上部(以及上覆的Eslida组中的更多)碳酸盐古土壤,痕迹化石和植物化石的首次出现相吻合,标志着生物恢复的开始。这片区域。因此,在西特提斯的其他欧洲盆地(例如德国盆地,巴黎盆地以及法国东南部和撒丁岛盆地)中存在APS矿物,这也可能表明不利的环境条件导致这些地区生物恢复的延迟。通常,APS矿物质的存在可以用作不利于生物定殖的干旱酸性条件的指示。

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