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Isotopic (δ 18 O and δ 2 H) Integrity of Water Samples Collected and Stored by Automatic Samplers

机译:同位素(δ18o和δ2h)采集水样的完整性,并通过自动采样器储存

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摘要

Stable water isotopes are increasingly becoming part of routine monitoring programs that use automatic samplers. The objectives of this study were to quantify the uncertainty in isotope signatures due to the length of sample storage (1–24 d) inside autosamplers over a range of air temperatures (5–35°C) and to evaluate the effectiveness of two evaporation reduction measures (mineral oil and high density polyethylene balls). Results of the laboratory study showed that up to 11.8% of the sample volume evaporated when samples were stored in an autosampler at 35°C for 24 d. To prevent significant water isotope fractionation, samples should be retrieved from autosamplers <7 d following sample collection when air temperatures are <22°C and <3 d following sample collection when the air temperature is 35°C. If samples need to be stored in an autosampler for longer periods of time, we found that mineral oil added to sample bottles effectively decreases evaporation and the potential for isotope fractionation.
机译:稳定的水同位素越来越成为使用自动采样器的常规监测程序的一部分。本研究的目的是量化同位素签名中的不确定性由于自动进样器内的样品储存量(1-24d)在一系列空气温度(5-35°C)中,并评估了两次蒸发减少的有效性措施(矿物油和高密度聚乙烯球)。实验室研究结果表明,当样品在35℃下储存在30℃下,蒸发的样品体积的高达11.8%的样品体积蒸发。为了防止显着的水同位素分馏,当空气温度<22℃和在空气温度为35℃后,当空气温度<22℃和<3d后,应从样品收集后检索样品<7d。如果需要将样品储存在自动进样器中,我们发现添加到样品瓶中的矿物油有效降低蒸发和同位素分馏的可能性。

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