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A method to measure the isotopic (~(13)C) composition of dissolved organic carbon using a high temperature combustion instrument

机译:一种使用高温燃烧仪测量溶解的有机碳的同位素(〜(13)C)组成的方法

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摘要

The stable isotopes of dissolved organic carbon (DOC) are a powerful tool for distinguishing sources and inputs of organic matter in aquatic systems. While several methods exist to perform these analyses, no labs routinely utilize a high temperature combustion (HTC) instrument. Advantages of HTC instruments include rapid analysis, small sample volumes and minimal sample preparation, making them the favored devices for most routine oceanic DOC concentration measurements. We developed a stable carbon DOC method based around an HTC system. This method has the benefit of a simple setup, requiring neither vacuum nor high pressures. The main drawback of the method is a significant blank, requiring careful accounting of all blank sources for accurate isotopic and concentration values. We present here a series of experiments to determine the magnitude, source and isotopic composition of the HTC blank. Over time, the blank is very stable at ~20 ng of carbon with a δ~(13)C of-18.1(per thousand) vs. VPDB. The similarity of the isotopic composition of the blank and seawater samples makes corrections relatively minor. The precision of the method was determined by oxidizing organic standards with a wide isotopic and concentration range (-9(per thousand) to -39(per thousand); 18 μM to 124 μM). Analysis of seawater samples demonstrates the accuracy for low concentration, high salinity samples. The overall error on the measurement is approximately ±0.8(per thousand).
机译:溶解有机碳(DOC)的稳定同位素是区分水生系统中有机物来源和输入的有力工具。尽管存在几种执行这些分析的方法,但没有实验室例行使用高温燃烧(HTC)仪器。 HTC仪器的优势包括快速分析,少量样品和最少的样品制备,使其成为大多数常规海洋DOC浓度测量的首选设备。我们基于HTC系统开发了稳定的碳DOC方法。这种方法的优点是设置简单,既不需要真空又不需要高压。该方法的主要缺点是存在大量空白,需要仔细考虑所有空白来源以获取准确的同位素和浓度值。我们在这里提出了一系列实验,以确定HTC空白的大小,来源和同位素组成。随着时间的推移,空白碳在〜20 ng的碳中非常稳定,δ〜(13)C为-18.1(千分之一),相对于VPDB。空白样品和海水样品同位素组成的相似性使得校正相对较小。该方法的精密度是通过氧化同位素和浓度范围较宽的有机标样(-9(每千)至-39(每千); 18μM至124μM)来确定的。海水样品的分析证明了低浓度,高盐度样品的准确性。测量的总误差约为±0.8(千分之一)。

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