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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Gas chromatography-pyrolysis-isotope ratio mass spectrometry: a new method for investigating intramolecular isotopic variation in low molecular weight organic acids
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Gas chromatography-pyrolysis-isotope ratio mass spectrometry: a new method for investigating intramolecular isotopic variation in low molecular weight organic acids

机译:气相色谱-热解-同位素比质谱法:一种调查低分子量有机酸分子内同位素变化的新方法

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摘要

A new GC-Pyrolysis-IRMS method was developed for the delta(13)C determination of carboxyl carbon in low-molecular weight organic acids. By utilizing a palladium-wire reactor Lit 600 C with a helium,hydro-g-en reactant gas, the carboxyl carbon of low-molecular weight organic acids is pyrolytically cleaved and introduced into an IRMS for stable carbon-isotope analysis. The precision of the GC-Py-IRMS method is similar to that of more conventional, combustion-based continuous-flow IRMS techniques and interpretation of isotope-dilution experiments with acetic and octanoic acid shows that the technique is sufficiently accurate for the determination of delta(13)C values at natural abundance levels, As a demonstration of this ne capability, the carboxyl carbon Of low-molecular weight (LMW, C-2-C-6) organic acids generated via hydrous pyrolysis of an oil-prone source rock (the Ghareb Shale) shows delta(13)C values consistent with the hypothesis that organic acids readily undergo exchange of their carboxy I carbon with aqueous inorganic carbon. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 20]
机译:开发了一种新的GC-热解-IRMS方法,用于δ(13)C测定低分子量有机酸中的羧基碳。通过将钯线反应器Lit 600 C与氦,氢-g-en反应气体一起使用,低分子量有机酸的羧基碳被热裂解并引入IRMS中,以进行稳定的碳同位素分析。 GC-Py-IRMS方法的精度类似于更常规的基于燃烧的连续流IRMS技术,对乙酸和辛酸的同位素稀释实验的解释表明,该技术足以确定δ (13)C值处于自然丰度水平,作为这种新能力的证明,是通过易生油岩的含水热解生成的低分子量有机酸(LMW,C-2-C-6)的羧基碳(Ghareb页岩)显示出delta(13)C值,与有机酸容易发生其羧基I碳与水性无机碳交换的假设相符。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:20]

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