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Deep time foraminifera Mg/Ca paleothermometry: Nonlinear correction for secular change in seawater Mg/Ca

机译:深层有孔虫Mg / Ca古温度计:海水Mg / Ca长期变化的非线性校正

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The Mg/Ca ratio of foraminifera tests is increasingly being utilized as a paleotemperature proxy. Deep time (pre-Pleistocene) Mg/Ca paleothermometry is complicated by the fact that the Mg/Ca ratio of seawater (Mg/Ca_(sw)) has undergone considerable secular variation over the Cenozoic. Previous studies have corrected for this by assuming an invariant Mg distribution coefficient (D_(Mg)) with Mg/Ca_(sw). More recent laboratory culturing has shown that this is not the case, demonstrating that a power relationship best describes the variation in test Mg/Ca (Mg/Ca_(test)) with Mg/Ca _(sw). Therefore, previous corrections are likely to have led to inaccurate temperature reconstructions. Here, we show how the systematics of such a correction should be applied and demonstrate why this provides good evidence that the Mg/Ca ratio of Paleogene seawater was lower than previously implied by foraminiferal constraints, in agreement with the majority of the proxy Mg/Ca_(sw) evidence. We also demonstrate how it is indirectly possible to constrain the value of H, the power component of a Mg/Ca _(test)-Mg/Ca_(sw) calibration, potentially enabling the appropriate correction of results derived from species where this relationship has not been calibrated. However, this technique should not be treated as a substitute for culturing. The previous erroneous assumptions regarding both (1) the relationship between Mg/Ca_(test) and Mg/Ca_(sw) and (2) the Mg/Ca ratio of seawater at a given time in the past may counteract each other to differing extents. As a result, previous absolute pre-Pleistocene paleotemperature estimates derived from Mg/Ca ratios in foraminifera should be treated with caution, although relative temperature changes over short (<1 Ma timescales) are likely to be reliable.
机译:有孔虫测试的Mg / Ca比值越来越多地用作古温度的替代物。较深的时间(前更新世),Mg / Ca的古测温法很复杂,因为海水的Mg / Ca比(Mg / Ca_(sw))在新生代经历了相当长的长期变化。先前的研究通过假设Mg / Ca_(sw)不变的Mg分布系数(D_(Mg))对此进行了纠正。最近的实验室培养表明情况并非如此,这表明幂次关系最能描述测试Mg / Ca(Mg / Ca_(test))与Mg / Ca _(sw)的变化。因此,以前的校正很可能导致温度重建不准确。在这里,我们展示了如何应用这种校正的系统方法,并说明了为什么这提供了充分的证据,表明古近代海水的Mg / Ca比低于有孔虫限制所暗示的水平,与大多数代理Mg / Ca_一致(sw)证据。我们还演示了如何间接地限制H的值,H的值是Mg / Ca _(test)-Mg / Ca_(sw)校准的功率分量,从而有可能适当地校正源自具有这种关系的物种的结果尚未校准。但是,该技术不应视为替代培养。先前关于(1)Mg / Ca_(test)和Mg / Ca_(sw)之间的关系以及(2)过去给定时间的海水Mg / Ca比的错误假设可能会在不同程度上相互抵消。结果,尽管有短期(<1 Ma时标)的相对温度变化可能是可靠的,但应谨慎对待先前有孔虫中Mg / Ca比值得出的绝对更新世前绝对古温度。

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