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Climate and Ocean Dynamics and the Lead Isotopic Records in Pacific Ferromanganese Crusts

机译:太平洋铁锰结壳的气候和海洋动力学及铅同位素记录

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As hydrogenous iron-manganese crusts grow, at rates of millimeters per million years, they record changes in the lead isotopic composition of ambient seawater. Time-resolved lead isotopic data for cut slabs of two central Pacific iron-manganese crusts that have been growing since about 50 million years ago were measured in situ by laser ablation, multiple-collector, inductively coupled plasma mass spectrometry. The lead isotopic compositions have remained remarkably uniform over the past 30 million years, but the record of small variations corresponds with other paleoceanographic indicators of climate change, including weathering and glaciation. This implies that despite the short residence time of lead in the oceans, global mechanisms may influence lead isotopic compositions in the central Pacific, far from continental inputs, because of changes in weathering, ocean circulation, and degree of mixing. Thus lead isotopic data could be used to probe climate-driven changes in ocean circulation through time.
机译:随着含氢铁锰结壳以百万分之一毫米/毫米的速度增长,它们记录了周围海水中铅同位素组成的变化。通过激光烧蚀,多收集器,电感耦合等离子体质谱仪原位测量了约5000万年前开始生长的两个太平洋中部铁锰结壳切割板的时间分辨铅同位素数据。在过去的三千万年中,铅的同位素组成一直保持非常均匀,但是记录的微小变化与气候变化的其他古海洋学指标相对应,包括风化和冰川作用。这意味着尽管铅在海洋中的停留时间很短,但由于风化,海洋环流和混合程度的变化,全球机制仍可能影响中部太平洋的铅同位素组成,而不是来自大陆的投入。因此,铅同位素数据可以用来探测气候驱动的海洋循环随时间的变化。

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