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采用低温调制快速气相色谱-单光子电离质谱联用技术对热分析仪器中演化气体进行高分辨在线有机化学形态分析。

Highly resolved online organic-chemical speciation of evolved gases from thermal analysis devices by cryogenically modulated fast gas chromatography coupled to single photon ionization mass spectrometry.

机构信息

Helmholtz Zentrum München, Institut für Ökologische Chemie, Deutsches Forschungszentrum für Gesundheit und Umwelt (GmbH), D-85764 Neuherberg, Germany.

出版信息

Anal Chem. 2010 Dec 1;82(23):9644-53. doi: 10.1021/ac100745h. Epub 2010 Nov 2.

Abstract

Multi-dimensional analysis (MDA) in analytical chemistry is often applied to improve the selectivity of an analytical device and, therefore, to achieve a better overview of a sample composition. Recently, the hyphenation of thermogravimetry with single photo ionization mass spectrometry (TG-SPIMS) using an electron beam pumped excimer lamp (EBEL) for VUV radiation was applied. The concept of MDA has been realized by upgrading the TG-SPIMS system with a quasi comprehensive chromatographic separation step before the soft ionization (TG-GCxSPIMS). The system was characterized by the thermal analysis of diesel fuel, which has often been investigated by the GCxGC-community and is therefore a well-known sample material in MDA. Data from this measurement are used to explain the three-dimensional data structure and the advantages of the online TG-GCxSPIMS as compared to TG-SPIMS. Subsequently, the thermal decomposition behavior of a polymer, acrylonitrile-butadiene-styrene (ABS), is investigated. TG-GCxSPIMS provides a two-dimensional analysis of the evolved gaseous products. TG relevant data are obtained as well as an improved resolution power to separate isobaric molecular structures without losing any fraction of the samples, as is often the case in heart cutting approaches. Additionally, this solution is not associated with any extension of the measurement time. The assignment of the substance pattern to distinct species is improved as compared to solely using mass spectrometry without a preceding separation step. Furthermore, hitherto undetected compounds have been found in the evolved gases from the thermal degradation of ABS. Finally, a first estimation of the limit of detection has been carried out. This results in a significant decrease of the LOD in case of TG-GCxSPIMS (500 ppt for toluene) as compared to 30 ppb, which could be reached with TG-SPIMS.

摘要

多维度分析(MDA)在分析化学中常用于提高分析设备的选择性,从而更好地了解样品的组成。最近,采用电子束泵浦准分子灯(EBEL)产生真空紫外辐射,将热重法与单光子电离质谱(TG-SPIMS)联用。通过在软电离(TG-GCxSPIMS)之前增加准全色谱分离步骤,对 TG-SPIMS 系统进行升级,实现了 MDA 的概念。该系统的特点是对柴油机燃料进行热分析,这是 GCxGC 领域经常研究的对象,因此是 MDA 中一种众所周知的样品材料。该测量的数据用于解释三维数据结构以及在线 TG-GCxSPIMS 相对于 TG-SPIMS 的优势。随后,研究了聚合物丙烯腈-丁二烯-苯乙烯(ABS)的热分解行为。TG-GCxSPIMS 提供了气态产物的二维分析。获得了与 TG 相关的数据,并提高了分辨率,能够分离等压分子结构,而不会像中心切割方法那样损失任何一部分样品。此外,这种方法不会延长测量时间。与不进行分离步骤仅使用质谱法相比,物质图谱的分配得到了改善。此外,还在 ABS 热降解产生的气体中发现了以前未检测到的化合物。最后,对检测限进行了初步估算。与 TG-SPIMS 相比(甲苯的 LOD 为 500 ppt),TG-GCxSPIMS 的 LOD 显著降低(LOD 为 30 ppb)。

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