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Siderite ‘clumped’ isotope thermometry: A new paleoclimate proxy for humid continental environments

机译:菱铁矿“块状”同位素测温法:一种适用于潮湿大陆环境的新型古气候替代物

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Clumped isotope measurements can be used to exploit the paleoclimatic potential of pedogenic siderite (FeCO_3); however, the applicability of this method is held back by the lack of clumped isotope calibrations of mineralogies other than calcite and aragonite. Here we present an inorganic calibration of siderites grown in the laboratory between 21 and 51 -C. Linear regression of ?_(47) values and temperature (106/T2, K) yields the following relationship (r~2 = 0.997): ?_(47)-RF =(0:0356 - 0:0018) ×10~6/T~2 + (0.172 ± 0.019)We demonstrate that this calibration is indistinguishable from calcite at current levels of analytical precision. Our observations suggest that there is likely no large systematic bias in the clumped isotope acid fractionation factors between the two different carbonate minerals. We also present clumped isotope measurements of a natural siderite collected from Holocene sediments of the Mississippi River Delta. We find that siderites record warm season marsh water temperatures instead of mean annual temperatures as it has long been presumed. This finding has important implications for the accuracy of siderite stable isotope and clumped isotope based climate reconstructions
机译:团聚同位素测量可用于开发成岩性菱铁矿(FeCO_3)的古气候潜力;但是,由于方解石和文石以外的矿物学没有成簇的同位素标定,这种方法的适用性受到了限制。在这里,我们介绍了在实验室中21至51 C之间生长的菱铁矿的无机校准。 ?_(47)值与温度(106 / T2,K)的线性回归得出以下关系(r〜2 = 0.997):?_(47)-RF =(0:0356-0:0018)×10〜 6 / T〜2 +(0.172±0.019)我们证明,在当前的分析精度水平下,此校准与方解石是无法区分的。我们的观察结果表明,两种不同的碳酸盐矿物之间的聚集的同位素酸分级因子之间可能没有较大的系统偏差。我们还介绍了从密西西比河三角洲全新世沉积物中收集的天然菱铁矿的团簇同位素测量结果。我们发现菱铁矿记录的是温暖季节的沼泽水温,而不是长期以来一直认为的年平均温度。这一发现对菱铁矿稳定同位素和基于团簇同位素的气候重建的准确性具有重要意义。

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