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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Composition of rare earth elements in settling particles collected in the highly productive North Pacific Ocean and Bering Sea: Implications for siliceous-matter dissolution kinetics and formation of two REE-enriched phases
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Composition of rare earth elements in settling particles collected in the highly productive North Pacific Ocean and Bering Sea: Implications for siliceous-matter dissolution kinetics and formation of two REE-enriched phases

机译:高产北太平洋和白令海的沉降颗粒中稀土元素的组成:对硅质物质溶解动力学的影响以及两个富稀土相的形成

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Settling particles were sampled monthly for 1. year using an automated time-series sediment trap positioned at similar depths at two sites of high diatomaceous productivity in the North Pacific Ocean and Bering Sea. The particles were analyzed for rare earth elements (REEs) by inductively coupled plasma mass spectrometry (ICP-MS) with and without chemical treatment of the bulk samples to isolate siliceous fractions. The REE composition of the bulk samples is explained largely by the contribution of two distinct components: (i) carbonate with a higher REE concentration, a negative Ce anomaly and lighter REE (LREE) enrichment; (ii) opal with a lower REE concentration, a weaker negative Ce anomaly and heavier REE (HREE) enrichment.The siliceous fractions of settling particles are characterized by high Si/Al ratios (30-190), reflecting high diatom productivity at the studied sites. The La/Al ratio of the siliceous fraction is close to that of the upper crust, but the Lu/Al and Lu/La ratios are significantly higher than those of the upper crust or airborne particles, indicating the presence of excess HREEs in the siliceous fraction. Diatoms are believed to be important carriers of HREEs.The Ce anomaly, Eu anomaly, slope of the REE pattern, and ΣREE of the siliceous fraction vary exponentially with decreasing total mass flux. They can be well-reproduced according to the differential dissolution kinetics of elements in the order of Ce. <. lighter REEs (LREEs) < Eu = heavier REEs (HREEs) < Si from settling particles, where the dissolution rate is critically reduced through particle aggregation. This order is consistent with the vertical distribution of dissolved REEs and Si in oceans. The differential dissolution kinetics leads to HREE enrichment of the original diatoms and REE enrichment of dissolved diatoms. The Lu/Si ratio of the siliceous fraction of settling particles recovered from some of the highest diatom fluxes is identical to that of the two elements dissolved in deep seawater, providing further evidence for the dissolution of siliceous matter in deep water.
机译:使用位于北太平洋和白令海两个硅藻生产力高的地点的相似深度的自动时间序列沉积物捕集阱,每月对沉降颗粒进行1年采样。通过电感耦合等离子体质谱法(ICP-MS)对颗粒进行稀土元素(REE)分析,对化学处理和不进行化学处理均分离出硅质组分。散装样品的稀土元素组成主要由两个不同的成分来解释:(i)碳酸盐具有较高的稀土元素浓度,负Ce异常和较轻的稀土元素(LREE)富集; (ii)具有较低REE浓度,较弱的Ce负异常和较重REE(HREE)富集的蛋白石。沉降颗粒的硅质级分具有较高的Si / Al比(30-190),反映了所研究硅藻的高生产率网站。硅质组分的La / Al比值接近上地壳,但Lu / Al和Lu / La比值明显高于上地壳或空气中的颗粒,表明硅质中存在过量的HREEs分数。硅藻被认为是HREE的重要载体.Ce异常,Eu异常,REE模式的斜率和硅质分数的ΣREE随着总质量通量的减小呈指数变化。根据元素的Ce差异溶解动力学,可以很好地复制它们。 <。较轻的REE(LREE)

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