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一种用于从冰芯中提取的大气甲烷进行高精度 δD 测量的气相色谱/热解/同位素比质谱系统。

A gas chromatography/pyrolysis/isotope ratio mass spectrometry system for high-precision deltaD measurements of atmospheric methane extracted from ice cores.

机构信息

Climate and Environmental Physics and Oeschger Centre for Climate Change Research, University of Bern, Switzerland.

出版信息

Rapid Commun Mass Spectrom. 2010 Mar 15;24(5):621-33. doi: 10.1002/rcm.4429.

Abstract

Air enclosures in polar ice cores represent the only direct paleoatmospheric archive. Analysis of the entrapped air provides clues to the climate system of the past in decadal to centennial resolution. A wealth of information has been gained from measurements of concentrations of greenhouse gases; however, little is known about their isotopic composition. In particular, stable isotopologues (deltaD and delta(13)C) of methane (CH(4)) record valuable information on its global cycle as the different sources exhibit distinct carbon and hydrogen isotopic composition. However, CH(4) isotope analysis is limited by the large sample size required and the demanding analysis as high precision is required. Here we present a highly automated, high-precision online gas chromatography/pyrolysis/isotope ratio monitoring mass spectrometry (GC/P/irmMS) technique for the analysis of deltaD(CH(4)). It includes gas extraction from ice, preconcentration, gas chromatographic separation and pyrolysis of CH(4) from roughly 500 g of ice with CH(4) concentrations as low as 350 ppbv. Ice samples with approximately 40 mL air and only approximately 1 nmol CH(4) can be measured with a precision of 3.4 per thousand. The precision for 65 mL air samples with recent atmospheric concentration is 1.5 per thousand. The CH(4) concentration can be obtained along with isotope data which is crucial for reporting ice core data on matched time scales and enables us to detect flaws in the measurement procedure. Custom-made script-based processing of MS raw and peak data enhance the system's performance with respect to stability, peak size dependency, hence precision and accuracy and last but not least time requirement.

摘要

大气封套在极地冰芯中代表唯一的直接古大气档案。被困空气的分析为过去气候系统提供了分辨率为十年到百年的线索。从温室气体浓度的测量中已经获得了大量信息;然而,它们的同位素组成却知之甚少。特别是,甲烷(CH4)的稳定同位素(δD 和 δ13C)记录了其全球循环的有价值信息,因为不同的来源表现出明显不同的碳和氢同位素组成。然而,CH4 同位素分析受到所需的大样本量和高要求分析的限制,因为需要高精度。在这里,我们提出了一种高度自动化、高精度的在线气相色谱/热解/同位素比监测质谱(GC/P/irmMS)技术,用于分析 δD(CH4)。它包括从冰中提取气体、浓缩、气相色谱分离和 CH4 的热解,从大约 500 克冰中分离 CH4,其浓度低至 350ppbv。可以用大约 40 毫升空气和仅大约 1 纳摩尔 CH4 测量冰样,精度为千分之 3.4。对于具有现代大气浓度的 65 毫升空气样品,精度为千分之 1.5。可以获得 CH4 浓度以及同位素数据,这对于报告匹配时间尺度的冰芯数据至关重要,并使我们能够检测测量过程中的缺陷。基于定制脚本的 MS 原始和峰数据处理提高了系统的性能,在稳定性、峰大小依赖性、因此精度和准确性以及最后但并非最不重要的时间要求方面。

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