首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Modification of a commercial gas chromatography isotope ratio mass spectrometer for on-line carbon isotope dilution: Evaluation of its analytical characteristics for the quantification of organic compounds
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Modification of a commercial gas chromatography isotope ratio mass spectrometer for on-line carbon isotope dilution: Evaluation of its analytical characteristics for the quantification of organic compounds

机译:用于在线碳同位素稀释的商用气相色谱同位素比质谱仪的改进:用于定量分析有机化合物的分析特性

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We describe the instrumental modification of a commercial gas chromatography isotope ratio mass spectrometer (GC-IRMS) and its application for on-line carbon isotope dilution. The main modification consisted in the addition of a constant flow of enriched (CO2)-C-13 diluted in helium after the chromatographic column through the splitter holder located inside the chromatographic oven of the instrument. In addition, and in contrast to the conventional mode of operation of GC-IRMS instruments where the signal at m/z 45 is amplified 100-fold with respect to the signal at m/z 44, the same signal amplification was used in both Faraday cups at m/z 44 and 45. Under these conditions isotope ratio precision for the ratio 44/45 was around 0.05% RSD (n=50). The evaluation of the instrument was performed with mixtures of organic compounds including 11 n-alkanes, 16 PAHs, 12 PCBs and 3 benzothiophenes. It was observed that compounds of very different boiling points could be analysed without discrimination in the injector when a Programmable Temperature Vaporizer (PTV) injector was employed. Moreover, the presence of heteroatoms (Cl or S) in the structure of the organic compounds did not affect their combustion efficiency and therefore the trueness of the results. Quantitative results obtained for all the analytes assayed were excellent in terms of precision (<3% RSD) and accuracy (average relative error <= 4%) and what is more important using a single and simple generic internal standard for quantification. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们描述了商业气相色谱同位素比质谱仪(GC-IRMS)的仪器修改及其在在线碳同位素稀释中的应用。主要的修改包括在色谱柱之后通过位于仪器色谱柱箱内部的分流器固定器,不断添加在氦气中稀释的富集(CO2)-C-13恒定流量。此外,与传统的GC-IRMS仪器操作模式(其中m / z 45的信号相对于m / z 44的信号被放大100倍)相比,法拉第使用了相同的信号放大杯的m / z 44和45。在这些条件下,比率44/45的同位素比率精度约为0.05%RSD(n = 50)。使用包括11种正构烷烃,16种PAH,12种PCB和3种苯并噻吩的有机化合物混合物进行仪器评估。观察到,当使用可编程温度蒸发器(PTV)进样器时,可以在进样器中不受歧视地分析沸点非常不同的化合物。此外,有机化合物结构中杂原子(Cl或S)的存在不会影响其燃烧效率,因此不会影响结果的真实性。就所有被分析物而言,获得的定量结果在准确度(<3%RSD)和准确度(平均相对误差<= 4%)方面都非常出色,而使用一个简单的通用内标进行量化就显得尤为重要。 (C)2015 Elsevier B.V.保留所有权利。

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