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Feasibility of preparing and analyzing gas standards containing heavy hydrocarbons (C10–C16)

机译:制备和分析含重烃(C10 –C16 )气体标准品的可行性

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State and federal agencies are beginning to monitor ambient air for compounds related to diesel exhaust. The National Institute of Standards and Technology (NIST) was asked to develop standards containing heavy (C10–C16) alkanes which could then be used in air monitoring and exhaust studies. Several primary gravimetric standards, containing heavy (C10–C16) alkanes in nitrogen, were developed and analyzed by gas chromatography (GC) with flame-ionization detection (FID). The results of this research indicate that accurate gas standards containing these hydrocarbons can be prepared. However, the analytical results show that the temperature of the transfer system from the gas cylinder to the GC column (including the gas-sample valve) must be heated in order to prevent adsorption of these compounds within the analytical system. The results indicate that even at elevated temperatures these compounds are being absorbed within the system. The results show that quantitative results cannot be obtained by using one compound such as hexane, as an internal standard to determine the concentration of other hydrocarbons. Quantitative and accurate results are best obtained if standards for each hydrocarbon of interest are used to determine concentrations of unknowns for the respective hydrocarbon.
机译:州和联邦机构开始监测周围空气中与柴油机废气有关的化合物。美国国家标准技术研究院(NIST)被要求开发含有重链(C10 –C16 )烷烃的标准,然后将其用于空气监测和排气研究。开发了几种主要的重量标准品,其中含有重氮(C10 –C16 )烷烃,并通过气相色谱(GC)和火焰电离检测(FID)进行了分析。这项研究的结果表明,可以制备出包含这些碳氢化合物的准确气体标准。但是,分析结果表明,必须加热从气瓶到气相色谱柱(包括气体取样阀)的传输系统的温度,以防止这些化合物在分析系统中吸收。结果表明,即使在升高的温度下,这些化合物也被系统吸收。结果表明,通过使用一种化合物(例如己烷)作为内标来确定其他烃的浓度无法获得定量结果。如果使用每种目标碳氢化合物的标准液确定各个碳氢化合物的未知物浓度,则将获得最佳的定量和准确结果。

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