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Control mechanisms for the oceanic distribution of silicon isotopes

机译:硅同位素海洋分布的控制机制

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Marine diatoms take up silicic acid for the buildup of their opaline shells and discriminate against the heavier silicon isotope. For the first time, the overall oceanic distribution of silicon isotopes has been estimated by integration of the Hamburg Model of the Ocean Carbon Cycle, version 4 (HAMOCC4). It is shown that the relationship between the silicic acid concentration and its silicon isotope composition is not a simple Rayleigh distillation curve. Only the Southern Ocean and the equatorial Pacific show a clear functional dependency similar to the Rayleigh distillation curve. Model results can be used to predict opal silicon isotope compositions in the sediment and constrain the use of silicon isotopes as a proxy for silicic acid utilization. Owing to the structure of the Pacific current system, it might be valid to apply a relationship between surface silicic acid concentrations and the silicon isotope signal in the equatorial Pacific sediments.
机译:海洋硅藻吸收硅酸以形成其不透明的壳,并区别于较重的硅同位素。首次通过整合海洋碳循环汉堡模型第4版(HAMOCC4)估算了硅同位素的总体海洋分布。结果表明,硅酸浓度与其硅同位素组成之间的关系不是简单的瑞利蒸馏曲线。只有南大洋和赤道太平洋显示出与瑞利蒸馏曲线相似的明显功能依赖性。模型结果可用于预测沉积物中的蛋白石硅同位素组成,并限制使用硅同位素作为硅酸利用的代理。由于太平洋洋流系统的结构,在赤道太平洋沉积物中的表面硅酸浓度与硅同位素信号之间的关系可能是有效的。

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