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首页> 外文期刊>Geophysical Research Letters >Mystery of the volcanic mass-independent sulfur isotope fractionation signature in the Antarctic ice core - art. no. L12816
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Mystery of the volcanic mass-independent sulfur isotope fractionation signature in the Antarctic ice core - art. no. L12816

机译:南极冰芯中独立于火山质量的硫同位素分馏特征的奥秘-艺术。没有。 L12816

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We simulate the record of sulfur mass-independent fractionation (MIF) in sulfates found in the Antarctic ice cores from the 1991 eruption of Mt. Pinatubo. Discovery of MIF in sulfur isotopes in Archean/Early Proterozoic sediments and lack of MIF in sulfur in younger rocks placed a strict upper limit on the amount of oxidants and oxygen in the ancient Earth's atmosphere prior to 2.3 Gyr ago. However, recent measurements in ice cores suggest that some non-zero MIF in sulfate can be delivered to Antarctica following large volcanic eruptions. Current photochemical experiments do not identify the specific reaction responsible for sulfur MIF production. Here we show that a time-dependent non-zero sulfur MIF can be delivered to the ground in the present atmosphere if the MIF - producing process is SO3 photolysis. Fractionation from such photolysis has not been considered before, but is consistent with the available experimental data.
机译:我们模拟了从1991年山火山喷发在南极冰芯中发现的硫酸盐中硫的质量无关分馏(MIF)的记录。皮纳图博。在太古宙/早元古代沉积物中的硫同位素中发现MIF,而在较年轻的岩石中硫缺乏MIF,这在2.3 Gyr之前对古代地球大气中的氧化剂和氧气的含量提出了严格的上限。然而,最近对冰芯的测量表明,在大型火山喷发之后,硫酸盐中的一些非零的MIF可以被输送到南极洲。当前的光化学实验并未确定导致硫MIF产生的特定反应。在这里,我们表明,如果MIF的产生过程是SO3光解作用,那么随时间变化的非零硫MIF可以在当前大气中传递到地面。以前从未考虑过这种光解作用的分级分离,但与现有的实验数据一致。

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