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Development of a fraction collector for coupling gas chromatography with an AMS facility

机译:开发馏分收集器,将气相色谱仪与AMS设备耦合

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It has been shown that microscale ~(14)C measurements are possible by using a gas handling system and a gas ion source [T. Uhl, W. Kretschmer, W. Luppold, A. Scharf, AMS measurements from microgram to milligram, Nucl. Instr. and Meth. (2005) 474 (240th ed.), T. Uhl, W. Luppold, A. Rottenbach, A. Scharf, K. Kritzler, W. Kretschmer, Development of an automatic gas handling system for micro-scale AMS (~(14)C) measurements, Nucl. Instr. and Meth. (2007) 303 (259th ed.)]. In Erlangen a gas handling system was especially developed for environmental and biomedical investigations. For the separation of the compound of interest a standard gas chromatograph (GC) is used. To minimize the sample contamination and sample loss we have designed a fraction collector that connects a GC and an elemental analyzer (EA) directly. The selected compound is combusted in the EA and the resulting CO_2 is then transferred into the gas handling system for AMS measurements. From the beginning of GC preparation up to the AMS measurement the sample is in a closed line. All operations are fully automated, so no manual operations are necessary. This guarantees high cleanness and maximum sample yield. Preliminary measurements are done using modern and old ethyl alcohol (from fermentation and of petrochemical origin, respectively). The results are consistent with their expected values although cross contamination and background signal increased as the sample mass was decreased.
机译:业已表明,通过使用气体处理系统和气体离子源[T. C],可以进行约(14)C的微型测量。 Uhl,W。Kretschmer,W​​。Luppold,A。Scharf,从微克到毫克的AMS测量,Nucl。仪器和方法。 (2005)474(240th ed。),T。Uhl,W。Luppold,A。Rottenbach,A。Scharf,K。Kritzler,W。Kretschmer,为微型AMS开发自动气体处理系统(〜(14 )C)测量值,Nucl。仪器和方法。 (2007)303(259th ed。)]。在埃尔兰根,专门为环境和生物医学研究开发了气体处理系统。为了分离目标化合物,使用了标准气相色谱仪(GC)。为了最大限度地减少样品污染和样品损失,我们设计了一个馏分收集器,该馏分收集器直接连接GC和元素分析仪(EA)。选定的化合物在EA中燃烧,然后将生成的CO_2转移到气体处理系统中进行AMS测量。从开始制备GC到进行AMS测量,样品始终处于封闭状态。所有操作都是全自动的,因此不需要手动操作。这保证了高清洁度和最大的样品产量。初步测量是使用现代和旧的乙醇(分别来自发酵和石油化学来源)进行的。尽管交叉污染和背景信号随样品质量的降低而增加,但结果与预期值一致。

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