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一种用于有机和无机材料原位δ(13)C分析的激光提取/燃烧技术。

A laser extraction/combustion technique for in situ delta(13)C analysis of organic and inorganic materials.

作者信息

Wieser ME, Brand WA

机构信息

Finnigan MAT GmbH, Barkhausen Str. 2, 28197 Bremen, Germany.

出版信息

Rapid Commun Mass Spectrom. 1999 Jul;13(13):1218-1225. doi: 10.1002/(SICI)1097-0231(19990715)13:13<1218::AID-RCM652>3.0.CO;2-C.

Abstract

A CO(2) laser extraction system is described for in situ delta(13)C analysis of organic and inorganic materials. Carbonaceous compounds volatilized by the laser are quantitatively converted to CO(2) gas by a combustion furnace mounted after the sample chamber. Gases produced by the laser and combustion processes are swept by helium carrier gas and separated by a packed gas chromatography column prior to their introduction to an isotope ratio monitoring mass spectrometer. A sample of lentil bean was analyzed at a spatial resolution of 200 µm and yielded delta(13)C values with precision of +/- 0.3 per thousand. The accuracy of delta(13)C measurements was better than +/- 0.5 per thousand from NBS 22 (mineral oil), USGS 24 (graphite), and IAEA CO-1 (calcium carbonate). Copyright 1999 John Wiley & Sons, Ltd.

摘要

描述了一种用于有机和无机材料原位δ(13)C分析的CO(2)激光提取系统。激光挥发的含碳化合物通过安装在样品室后的燃烧炉定量转化为CO(2)气体。激光和燃烧过程产生的气体由氦载气吹扫,并在引入同位素比率监测质谱仪之前通过填充气相色谱柱进行分离。以200 µm的空间分辨率对小扁豆样品进行了分析,得到的δ(13)C值精度为±0.3‰。来自NBS 22(矿物油)、USGS 24(石墨)和IAEA CO-1(碳酸钙)的δ(13)C测量准确度优于±0.5‰。版权所有1999 John Wiley & Sons, Ltd.

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