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Static headspace sampling followed by gas chromatography and gas chromatograhy-mass spectrometry applied to various complex matrices.

机译:静态顶空进样,然后将气相色谱法和气相色谱-质谱法应用于各种复杂基质。

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摘要

Static headspace sampling was studied to: (1) minimize the effect of a soil's matrix on the analysis of benzene, toluene, ethylbenzene, and xylenes from soils, (2) determine the Henry's law coefficients for various fuel components, (3) compare gas-sampled and solid phase microextraction (SPME)-sampled static headspace, and (4) successfully couple static headspace sampling to high-speed GC.; The effects of various matrix modifiers were studied in addition to alternative techniques such as the full evaporation technique, to determine an effective way to eliminate the effect of the matrix on analyte recovery. The full evaporation technique used very high temperatures to force the analytes of interest into the gaseous phase. Using these high temperatures and no matrix modifying solution provided an analysis free of matrix effects.; Henry's Law coefficients were determined for several compounds found in reformulated gasolines. This new method relies only on the knowledge of the phase ratio defined by the experimental apparatus. The value obtained for MTBE using the method was in excellent agreement with other literature values, specifically 1.7 M/atm. Other compounds studied included: ETBE, TAME, DIPE, benzene, toluene, and ethylbenzene.; The comparison of gas-sampled and SPME-sampled static headspace methods when applied to GC-MS analyses was examined for the effectiveness of transferring of volatile components of several juices from sample vial to chromatograph. The results of this study showed the SPME fiber to be approximately 1400 time more effective, owing to the ability of the fiber to concentrate the analytes and transfer them without the need to inject large volumes of inert gas into the instrument.; Finally, the coupling of static headspace to high-speed GC allowed the reduction of the analysis time reported in the SPME study by a factor of approximately twenty times, from 75 to just 4 minutes. The sampling system designed used batch equilibration of many samples to enhance the speed of analysis, in conjunction with a sample collection method that used a trapping column to collect the sample which is rapidly transferred from the sample vial to the instrument by a stream of nitrogen.
机译:研究了静态顶空进样,以:(1)最小化土壤基质对土壤中苯,甲苯,乙苯和二甲苯的分析的影响;(2)确定各种燃料组分的亨利定律系数;(3)比较气体-采样和固相微萃取(SPME)采样的静态顶空,以及(4)成功将静态顶空采样耦合到高速GC。除了替代技术(例如全蒸发技术)外,还研究了各种基质改性剂的作用,以确定消除基质对分析物回收率影响的有效方法。完全蒸发技术使用非常高的温度来迫使目标分析物进入气相。使用这些高温并且没有基质修饰溶液,可以提供没有基质效应的分析。确定了在重新配制的汽油中发现的几种化合物的亨利定律系数。这种新方法仅依赖于由实验设备定义的相位比的知识。使用该方法获得的MTBE值与其他文献值非常吻合,特别是1.7 M / atm。研究的其他化合物包括:ETBE,TAME,DIPE,苯,甲苯和乙苯。应用于GC-MS分析的气体采样和SPME采样静态顶空方法的比较,检查了几种果汁的挥发性成分从样品瓶转移到色谱仪的有效性。这项研究的结果表明,由于SPME纤维能够浓缩分析物并将其转移,而无需向仪器中注入大量惰性气体,因此其功效要高出大约1400倍。最后,静态顶空与高速GC的耦合使SPME研究中报告的分析时间减少了大约20倍,从75分钟减少到仅4分钟。设计的采样系统使用许多样品的批次平衡来提高分析速度,并结合了一种使用捕集柱收集样品的方法,该方法通过氮气流将样品从样品瓶快速转移到仪器中。

著录项

  • 作者

    Miller, Michael Edward.;

  • 作者单位

    The University of Connecticut.;

  • 授予单位 The University of Connecticut.;
  • 学科 Chemistry Analytical.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;环境科学基础理论;
  • 关键词

  • 入库时间 2022-08-17 11:48:21

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