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采用气相色谱-真空紫外光谱法进行准绝对定量分析——教程。

Pseudo-absolute quantitative analysis using gas chromatography - Vacuum ultraviolet spectroscopy - A tutorial.

机构信息

Department of Chemistry & Biochemistry, The University of Texas at Arlington, Arlington, TX, USA.

VUV Analytics, Inc., Cedar Park, TX, USA.

出版信息

Anal Chim Acta. 2017 Feb 8;953:10-22. doi: 10.1016/j.aca.2016.11.039. Epub 2016 Nov 25.

DOI:10.1016/j.aca.2016.11.039
PMID:28010738
Abstract

The vacuum ultraviolet detector (VUV) is a new non-destructive mass sensitive detector for gas chromatography that continuously and rapidly collects full wavelength range absorption between 120 and 240 nm. In addition to conventional methods of quantification (internal and external standard), gas chromatography - vacuum ultraviolet spectroscopy has the potential for pseudo-absolute quantification of analytes based on pre-recorded cross sections (well-defined absorptivity across the 120-240 nm wavelength range recorded by the detector) without the need for traditional calibration. The pseudo-absolute method was used in this research to experimentally evaluate the sources of sample loss and gain associated with sample introduction into a typical gas chromatograph. Standard samples of benzene and natural gas were used to assess precision and accuracy for the analysis of liquid and gaseous samples, respectively, based on the amount of analyte loaded on-column. Results indicate that injection volume, split ratio, and sampling times for splitless analysis can all contribute to inaccurate, yet precise sample introduction. For instance, an autosampler can very reproducibly inject a designated volume, but there are significant systematic errors (here, a consistently larger volume than that designated) in the actual volume introduced. The pseudo-absolute quantification capability of the vacuum ultraviolet detector provides a new means for carrying out system performance checks and potentially for solving challenging quantitative analytical problems. For practical purposes, an internal standardized approach to normalize systematic errors can be used to perform quantitative analysis with the pseudo-absolute method.

摘要

真空紫外探测器(VUV)是一种新型的非破坏性质量敏感型气相色谱检测器,可连续快速采集 120 至 240nm 全波长范围内的吸收。除了常规的定量方法(内标和外标)外,气相色谱-真空紫外光谱法还有可能基于预先记录的截面(探测器记录的 120-240nm 波长范围内的明确吸光度)进行分析物的伪绝对定量,而无需传统的校准。本研究采用伪绝对法来实验评估与将样品引入典型气相色谱仪相关的样品损耗和增益的来源。使用苯和天然气的标准样品分别评估了基于柱上加载的分析物量对液体和气体样品进行分析的精密度和准确度。结果表明,进样体积、分流比和不分流分析的采样时间都可能导致不准确但精确的进样。例如,自动进样器可以非常可重复地注入指定的体积,但实际上引入的体积存在显著的系统误差(此处,始终比指定的体积大)。真空紫外探测器的伪绝对定量能力为进行系统性能检查提供了一种新方法,并有可能解决具有挑战性的定量分析问题。出于实际目的,可以使用内部标准化方法来归一化系统误差,以便使用伪绝对方法进行定量分析。

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