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首页> 外文期刊>Quaternary Research: An Interdisciplinary Journal >Subglacially precipitated carbonates record geochemical interactions and pollen preservation at the base of the Laurentide Ice Sheet on central Baffin Island, eastern Canadian Arctic
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Subglacially precipitated carbonates record geochemical interactions and pollen preservation at the base of the Laurentide Ice Sheet on central Baffin Island, eastern Canadian Arctic

机译:冰川下沉淀的碳酸盐记录了加拿大东部北极巴芬岛中部Laurentide冰盖底部的地球化学相互作用和花粉保存

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摘要

Themineralogy and isotopic compositions of subglacially precipitated carbonate crusts (SPCCs) provide information on conditions and processes beneath former glaciers and ice sheets. Here we describe SPCCs formed on gneissic bedrock at the bed of the Laurentide Ice Sheet (LIS) during the last glacial maximum on central Baffin Island. Geochemical data indicate that the Ca in the crusts was likely derived from the subglacial chemical weathering Ca-bearing minerals in the local bedrock. C and Sr isotopic analyses reveal that the C in the calcite was derived predominantly fromolder plant debris. The δ~(18)O values of the SPCCs suggest that these crusts formed in isotopic equilibrium with basal ice LIS preserved in the Barnes Ice Cap (BIC). Columnar crystal fabric and the predominance of sparite over micrite in the SPCCs are indicative of carbonate precipitation under open-system conditions. However, the mean δ~(18)O value of the calcite crusts is ~10‰ higher than those of primary LIS ice preserved in the BIC, demonstrating that SPCCs record the isotopic composition of only basal ice. Palynomorph assemblages preserved within the calcite and basal BIC ice include species last endemic to the Arctic in the early Tertiary. The source of these palynomorphs remains enigmatic.
机译:冰川下沉淀的碳酸盐结壳(SPCC)的矿物学和同位素组成提供了有关前冰川和冰盖下的条件和过程的信息。在这里,我们描述了在巴芬岛中部最后一次冰川最大爆发期间,在Laurentide冰盖(LIS)床的片麻岩基岩上形成的SPCC。地球化学数据表明,地壳中的Ca可能源自当地基岩中的冰下化学风化含钙矿物。 C和Sr同位素分析表明,方解石中的C主要来自较旧的植物残骸。 SPCC的δ〜(18)O值表明这些地壳是与同位素平衡形成的,与巴恩斯冰帽(BIC)中保存的基底冰LIS形成。 SPCC中的柱状晶体结构和Sparite超过micrite的优势表明了在开放系统条件下碳酸盐的沉淀。然而,方解石壳的平均δ〜(18)O值比BIC中保存的原始LIS冰的δ〜(18)O值高约10‰,这表明SPCC仅记录了基底冰的同位素组成。保存在方解石和基础BIC冰中的Palynomorph组合包括第三纪早期北极特有的物种。这些古怪物的来源仍然是谜。

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