首页> 外文期刊>Analytical methods >A compact comprehensive two-dimensional gas chromatography (GC×GC) approach for the analysis of biogenic VOCs
【24h】

A compact comprehensive two-dimensional gas chromatography (GC×GC) approach for the analysis of biogenic VOCs

机译:紧凑型综合二维气相色谱法(GC×GC)用于分析生物源VOC

获取原文
           

摘要

We describe the development of a compact comprehensive two-dimensional gas chromatograph suitable for the measurement of biogenic VOCs in the atmosphere at part per billion mixing ratios. The design seeks to minimise instrument size and power consumption and maximise portability and autonomy. The instrument concept is to achieve high analyte selectivity for complex VOC mixture analysis using comprehensive two-dimensional GC (GC×GC), rather than hyphenation with larger more expensive detectors such as MS. Key features of the analytical approach are a custom-built miniature thermal desorption trap to collect and concentrate VOCs from the sample gas stream, a copper conducting direct column heating system and a valve-modulated interface to enable GC×GC. The high power and large form-factor turbulent GC oven is replaced by direct column heating (and cooling below ambient) by thermal transfer from copper bobbin holders with heating and cooling input from Peltier devices. The combination of two independent copper bobbins allows for independent control of the two columns needed for comprehensive GC. A heated two position 1/16′′ diaphragm valve is used to enable flow modulation between two columns, with analyte detection at the outlet of the second column using a miniaturised low cost photo-ionisation detector. The instrument sub-components are controlled by a Compact RIO computer (National Instruments) and purpose designed software written in LabVIEW allowing autonomous measurements. The complete system weighs 15 kg, is around the size of a desktop computer and has a mean power demand of 112 W when battery powered. Results on the sensitivity and linearity for isoprene collection and analysis of standard gas mixtures are presented along with a discussion of limiting factors that hinder field device performance...
机译:我们描述了一种紧凑的全面二维气相色谱仪的开发,该色谱仪适用于以十亿分之一的混合比测量大气中的生物VOC。该设计旨在最小化仪器尺寸和功耗,并最大程度地提高便携性和自主性。该仪器的概念是使用全面的二维气相色谱(GC×GC)来实现复杂VOC混合物分析的高分析物选择性,而不是使用更大,更昂贵的检测器(例如MS)进行联用。该分析方法的主要特点是:定制的微型热脱附阱,用于收集和浓缩样品气流中的VOC;铜传导直接柱加热系统;以及阀调节接口,以实现GC×GC。高功率和大尺寸的湍流GC柱温箱通过铜线轴支架的热传递以及Peltier装置的加热和冷却输入被直接的柱加热(和低于环境温度的冷却)所取代。两个独立的铜线轴的组合可独立控制全面GC所需的两个色谱柱。使用加热的两个位置1/16''隔膜阀来实现两根色谱柱之间的流量调节,并使用小型低成本光电离检测器在第二根色谱柱的出口进行分析物检测。仪器的子组件由一台Compact RIO计算机(National Instruments)和专用于LabVIEW的专用软件控制,可实现自主测量。完整的系统重15公斤,大约是台式机的大小,电池供电时的平均功率需求为112W。提出了异戊二烯收集和标准气体混合物分析的灵敏度和线性结果,并讨论了限制现场设备性能的限制因素...

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号