首页> 外文期刊>Frontiers in Marine Science >Differentiating lithogenic supplies, water mass transport and biological processes on and off the Kerguelen Plateau using rare earth element concentrations and neodymium isotopic compositions
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Differentiating lithogenic supplies, water mass transport and biological processes on and off the Kerguelen Plateau using rare earth element concentrations and neodymium isotopic compositions

机译:利用稀土元素浓度和钕同位素组成,区分克格伦高原上下游的成岩供应,水质传输和生物过程

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Distributions of dissolved rare earth element (REE) concentrations and neodymium isotopic compositions (expressed as eNd) of seawater over and off the Kerguelen Plateau in the Southern Ocean are presented. The sampling took place during the austral spring bloom in October-November 2011 (KEOPS2 project, GEOTRACES process study) and aimed to further the investigations of the KEOPS1 austral summer study in terms of sources and transport of lithogenic material, and to investigate the impact of local biogeochemical cycles on the REE distributions. The REE signature of the coastal eastern Kerguelen Islands waters was characterized by negative europium anomalies (Eu/Eu*) and negative eNd in filtered samples. By contrast, the unfiltered sample showed a positive Eu/Eu* and more radiogenic eNd. These distinct signatures could reflect either differential dissolution of the local flood basalt minerals or differential leaching of local trachyte veins. The dissolved Kerguelen coastal REE patterns differ from those observed close to Heard Island, these latter featuring a positive Eu/Eu* and a less radiogenic eNd (Zhang et al., 2008). These differences enabled us to trace the transport of waters (tagged by the Kerguelen REE signature) 200 km downstream from the coastal area, north of the Polar Front. Northward transport of the central Plateau shallow waters, enriched by both local vertical supplies and lateral advection of inputs from Heard Island, was also evident. However, the transport of Kerguelen inputs southeastward across the Polar Front could not be discerned (possibly as a result of rapid dilution or scavenging of REE signatures), although evidence for such transport was found previously using Ra isotopes (Sanial et al., 2015). Comparison of the REE patterns at stations sampled prior, during and at the demise of the bloom revealed diverse fractionations, including production of significant lanthanum and europium anomalies, which are tentatively ascribed to chemical reactions with various inorganic and biogenic phases, including surface coatings, barite crystals, and biogenic silica.
机译:给出了南大洋克格伦高原上外的溶解稀土元素(REE)浓度和钕同位素同位素组成(以eNd表示)的分布。采样发生在2011年10月至11月的南半球春季开花期(KEOPS2项目,GEOTRACES过程研究),旨在进一步研究KEOPS1南半球夏季研究的成岩物质来源和运输,并调查成岩物质的影响。稀土元素分布的局部生物地球化学循环。克格伦岛东部沿海水域的稀土元素特征是filtered样品的负negative异常(Eu / Eu *)和eNd负。相比之下,未过滤的样品显示出正Eu / Eu *和放射原性eNd。这些独特的特征可能反映出局部洪泛玄武岩矿物的溶出程度不同,也可能反映了局部长曲形岩脉的不同浸出。溶解的Kerguelen沿海REE模式与在Heard Island附近观察到的模式不同,后者的Eu / Eu *为正,而eNd的放射度较低(Zhang等,2008)。这些差异使我们能够追踪极地线以北沿海地区下游200公里处的水域运输(标有Kerguelen REE标记)。高原中部浅水的向北运输,也得到了当地垂直供应和希德岛投入物横向平流的充实。然而,虽然以前曾使用Ra同位素发现过这种运输的证据,但无法辨认出Kerguelen输入物通过极地线向东南方的迁移(可能是由于快速稀释或清除了REE信号的结果)(Sanial等人,2015)。 。在花粉灭亡之前,过程中和灭亡时对采样站的REE模式进行比较,发现了各种不同的馏分,包括产生大量的镧和euro异常,这些异常暂时地归因于与各种无机和生物相的化学反应,包括表面涂层,重晶石晶体和生物硅。

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