珊瑚海和所罗门海的钕同位素组成和稀土元素浓度变化

V. Pham, C. Jeandel, M. Grenier, S. Cravatte, G. Eldin, M. Belhadj, C. Germineaud, Tu Van Vu
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引用次数: 1

摘要

在过去十年中,在理解珊瑚海和所罗门海作为赤道太平洋水域和化学元素主要供应国的作用方面取得了重大进展。然而,这些水域的位置、深度和化学富集过程仍然受到限制。钕(Nd)同位素组成(εNd)和稀土元素浓度(REE)是陆地-海洋化学交换的有力示踪剂。结合起来,它们可以极大地完善这些交换的特征。在这里,我们报告了位于珊瑚海和所罗门海的21个站点的εN d剖面,这是GEOTRACES GP-12巡航的一部分,补充了Pham的稀土元素浓度(REE)剖面(化学地质学,2019,524(5月),11-36)。离开所罗门海的水域通常比进入的水域更具放射性,这表明沿其穿过所罗门海的路径输入了放射性物质。这种放射性物质通过自然过程(河流、火山灰)和可能的当地采矿活动被带到地表水。在次表层和中间层中也观察到明显的εN d增加。所有这些过程都表明了本地边界交换(BE)过程的发生,估计将在几天内发生。水文和化学示踪剂的耦合可以突出影响某些水层的陆地-海洋相互作用,并量化Nd的交换通量。修改下温跃层中的Nd浓度和同位素组成需要7.9±2.0 t(Nd)/yr的外部通量,而清除通量为1.8±2.3 t(钕)/yr,这只能部分平衡,从而导致6.1±1.7 t(Nd)/yr的净流入。关于上环极深水,估计总净通量为105±50 t(Nd)/年,外部通量相对较高(86±31 t(Nd)/年),而清除通量仍然存在。这些结果完善了所罗门海作为太平洋赤道水域大陆化学元素供应国的作用。
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Neodymium Isotopic Composition and Rare Earth Element Concentration Variations in the Coral and Solomon Seas
Significant progress has been made in the last decade on the understanding of the role of the Coral and Solomon Seas as major suppliers of waters and chemical elements to the equatorial Pacific. Yet, the location, depth, and processes of chemical enrichment of these waters remain poorly constrained. Neodymium (Nd) isotopic compositions ( ε N d ) and rare earth element concentrations (REE) are powerful tracers of land-ocean chemical exchanges. Combined, they can greatly refine the characterization of these exchanges. Here we report profiles of ε N d at 21 stations located in the Coral and Solomon Seas as part of the GEOTRACES GP-12 cruise that complement the rare earth element concentration (REE) profiles of Pham (Chemical Geology, 2019, 524 (May), 11–36). Waters exiting the Solomon Sea are generally slightly more radiogenic than the incoming ones, suggesting inputs of radiogenic material along their pathways across the Solomon Sea. This radiogenic material is brought to the surface waters via natural processes (rivers, volcanic dusts) and likely local mining activities. Noticeable ε N d increases are also observed in subsurface and intermediate layers. All these processes indicate the occurrence of local Boundary Exchange (BE) processes, which are estimated to occur within a few days. Coupling hydrological and chemical tracers allows highlighting the land-ocean interactions affecting some water layers and quantifying the exchanged fluxes of Nd. Modifications of the Nd concentration and isotopic composition in the lower thermocline layer require an external flux of 7.9 ± 2.0 t(Nd)/yr only partly balanced by a scavenging flux of 1.8 ± 2.3 t(Nd)/yr, leading to a net influx of 6.1 ± 1.7 t(Nd)/yr. Regarding the Upper Circumpolar Deep Water, a total net flux of 105 ± 50 t(Nd)/yr is estimated, the external flux is relatively high (86 ± 31 t(Nd)/yr while the scavenging flux remains. These results refine the role of the Solomon Sea as a supplier of continental chemical elements to the Pacific equatorial waters.
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