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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Climate and cave control on Pleistocene/Holocene calcite-to-aragonite transitions in speleothems from Morocco: Elemental and isotopic evidence
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Climate and cave control on Pleistocene/Holocene calcite-to-aragonite transitions in speleothems from Morocco: Elemental and isotopic evidence

机译:摩洛哥脾脏中更新世/全新世方解石-文石过渡的气候和洞穴控制:元素和同位素证据

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摘要

The occurrence of aragonite in speleothems has commonly been related to high dripwater Mg/Ca ratios, because Mg is known to be a growth inhibitor for calcite. Laboratory aragonite precipitation experiments, however, suggested a more complex array of controlling factors. Here, we present data from Pleistocene to Holocene speleothems collected from both a dolostone and a limestone cave in northern Morocco. These stalagmites exhibit both lateral and stratigraphic calcite-to-aragonite transitions. Aragonite fabrics are well-preserved and represent primary features. In order to shed light on the factors that control alternating calcite and aragonite precipitation, elemental (Mg, Sr, Ba, U, P, Y, Pb, Al, Ti and Th) abundances were measured using LA-ICP-MS, and analysed with Principal Component Analysis. Samples were analyzed at 100-200 μm resolution across stratigraphic and lateral transitions. Carbon and oxygen isotope ratios were analysed at 100 μm resolution covering stratigraphic calcite-to-aragonite transitions. Results show that the precipitation of aragonite was driven by a decrease in effective rainfall, which enhanced prior calcite precipitation. Different geochemical patterns are observed between calcite and aragonite when comparing data from the Grotte de Piste and Grotte Prison de Chien. This may be explained by the increased dripwater Mg/Ca ratio and enhanced prior aragonite precipitation in the dolostone cave versus lower dripwater Mg/Ca ratio and prior calcite precipitation in the limestone cave. A full understanding for the presence of lateral calcite-to-aragonite transitions is not reached. Trace elemental analysis, however, does suggest that different crystallographic parameters (ionic radius, amount of crystal defect sites, adsorption potential) may have a direct effect on the incorporation of Sr, Mg, Ba, Al, Ti, Th and possibly Y and P.
机译:ele皮中文石的存在通常与高滴水Mg / Ca比有关,因为已知Mg是方解石的生长抑制剂。然而,实验室文石沉淀实验表明,控制因素更为复杂。在这里,我们介绍了从摩洛哥北部的白云岩和石灰岩洞穴收集的从更新世到全新世speleothems的数据。这些石笋同时具有侧向和地层方解石-文石过渡。文石织物保存完好,代表主要特征。为了阐明控制方解石和文石交替沉积的因素,使用LA-ICP-MS测量了元素(Mg,Sr,Ba,U,P,Y,Pb,Al,Ti和Th)的丰度,并进行了分析。与主成分分析。跨地层和横向过渡层以100-200μm的分辨率分析样品。以100μm的分辨率分析了碳和氧的同位素比,涵盖了方解石到文石的过渡。结果表明,文石的沉淀是由有效降水的减少驱动的,而有效降水减少了方解石的先前沉淀。当比较Grotte de Piste和Grotte Prison de Chien的数据时,在方解石和文石之间观察到不同的地球化学模式。这可能是由于白云岩溶洞中的滴水Mg / Ca比值增加和先前文石沉淀的增加,而石灰岩溶洞中的滴水Mg / Ca比值较低和先前的方解石沉淀可以解释的。尚未完全了解方解石向文石的横向过渡的存在。但是,痕量元素分析确实表明,不同的晶体学参数(离子半径,晶体缺陷位点的数量,吸附电位)可能会对Sr,Mg,Ba,Al,Ti,Th以及可能的Y和P的掺入产生直接影响。 。

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