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Glacial weathering and the hafnium isotope composition of seawater

机译:冰川风化和海水中is的同位素组成

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摘要

The Hf isotope composition of seawater does not match that expected from dissolution of bulk continental crust. This mismatch is generally considered to be due to retention of unradiogenic Hf in resistant zircons during incomplete weathering of continental crust. During periods of intense glacial weathering, zircons should break down more efficiently, resulting in the release of highly unradiogenic Hf to the oceans. We test this hypothesis by comparing Nd and Hf isotope time series obtained from NW Atlantic ferromanganese crusts. Both isotope systems show a decrease associated with the onset of northern hemisphere glaciation. The observed changes display distinct trajectories in ε_(Nd)-ε_(Hf) space, which differ from previously reported arrays of bulk terrestrial material and seawater. Such patterns are consistent with the release of highly unradiogenic Hf from very old zircons, facilitated by enhanced mechanical weathering.
机译:海水中的Hf同位素组成与大块大陆壳的溶解所预期的不符。通常认为这种失配是由于大陆壳未完全风化时在抗性锆石中保留了非放射性Hf。在强烈的冰川风化期间,锆石应更有效地分解,导致高度无辐射的Hf释放到海洋中。我们通过比较从西北大西洋铁锰结壳获得的Nd和Hf同位素时间序列来检验该假设。两种同位素系统都显示出与北半球冰期开始有关的减少。观测到的变化在ε_(Nd)-ε_(Hf)空间中显示出不同的轨迹,这与先前报道的大量陆地物质和海水阵列不同。这种模式与从非常老的锆石中释放出高度放射源性的Hf相一致,并通过增强的机械风化来促进。

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