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Measurements of relative distribution constants of vaporized hydrocarbons between air and polydimethylsiloxane via capillary columns for the calculation of headspace hydrocarbon compositions

机译:通过毛细管柱计算空气和聚二甲基硅氧烷之间汽化烃的相对分布常数的测量,用于计算顶空烃组合物的计算

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This study focused on the measurements and validity of relative distribution constants of vaporized hydrocarbons between air and polydimethylsiloxane (PDMS) using commercially available capillary columns. Capillary column gas chromatography (CCGC) measurements, using two columns containing a PDMS stationary phase with different film thicknesses, were conducted to determine the relative distribution constants of n-heptane, toluene, n-octane, p-xylene, n-nonane, and 1,2,4-trimethylbenzene between air and PDMS at 90 and 120 degrees C. To validate the accuracy of the relative distribution constants via CCGC, the compositions of three headspace samples containing different amounts of hydrocarbons were calculated using the relative distribution constants via CCGC and extracted amounts via PDMS solid phase microextraction (SPME) at 90 and 120 degrees C. It was found that calculated hydrocarbon compositions of headspace samples were comparable to true headspace hydrocarbon compositions via direct vapor analysis, with an average absolute relative error of 3.2%. Our results indicate that CCGC is an alternative method that can provide a reliable and convenient method to determine the relative distribution constants of various hydrocarbons between air and PDMS for quantitative chemical analysis of headspace. (C) 2020 Elsevier B.V. All rights reserved.
机译:该研究专注于使用市售的毛细管柱的空气和聚二甲基硅氧烷(PDMS)之间的汽化烃的相对分布常数的测量和有效性。使用含有不同膜厚度的PDMS固定相的两个柱的毛细管柱气相色谱(CCGC)测量以确定正庚烷,甲苯,正辛烷,对二甲苯,N-壬烯和的相对分布常数空气和PDMS之间的1,2,4-三甲基苯,通过CCGC验证相对分布常数的精度,使用通过CCGC的相对分布常数计算含有不同量的烃的三个顶部空间样品的组合物通过PDMS固相微萃取(SPME)在90℃和120℃下提取量。发现,通过直接蒸汽分析,计算出顶空样品的烃组合物与真正的顶空烃组合物相当,平均绝对相对误差为3.2%。我们的结果表明,CCGC是一种替代方法,可以提供可靠且方便的方法,以确定空气和PDMS之间各种烃的相对分布常数,以进行顶空的定量化学分析。 (c)2020 Elsevier B.v.保留所有权利。

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