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A combined vacuum crushing and sieving (CVCS) system designed to determine noble gas paleotemperatures from stalagmite samples

机译:组合的真空破碎和筛分(CVCS)系统设计用于从石笋样品中确定稀有气体古温度

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摘要

This paper presents a novel extraction device for water and noble gases from speleothem samples for noble gas paleotemperature determination. The “combined vacuum crushing and sieving (CVCS) system” was designed to reduce the atmospheric noble gas contents from air inclusions in speleothem samples by up to 2 orders of magnitude without adsorbing atmospheric noble gases onto the freshly produced grain surfaces, a process that had often hampered noble gas temperature (NGT) determination in the past. We also present the results from first performance tests of the CVCS system processing stalagmite samples grown at a known temperature. This temperature is reliably reproduced by the NGTs derived from Ar, Kr, and Xe extracted from the samples. The CVCS system is, therefore, suitable for routine determinations of accurate NGTs. In combination with stalagmite dating, these NGTs will allow reconstructing past regional temperature evolutions, and also support the interpretation of the often complex stable isotope records preserved in the stalagmites' calcite.
机译:本文提出了一种新的提取装置,用于从脾针虫样品中提取水和稀有气体,以测定稀有气体的古温度。设计了“真空破碎与筛分(CVCS)组合系统”,可以将脾针虫样品中空气中的空气中的惰性气体含量降低2个数量级,而不会将大气中的惰性气体吸附到新生产的谷物表面上。过去常常会影响惰性气体温度(NGT)的确定。我们还将介绍CVCS系统处理在已知温度下生长的石笋样品的首次性能测试的结果。该温度可通过从样品中提取的Ar,Kr和Xe衍生的NGT可靠地再现。因此,CVCS系统适合常规确定准确的NGT。与石笋定年相结合,这些NGT可以重建过去的区域温度演化,并支持对保存在石笋方解石中的通常复杂的稳定同位素记录的解释。

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