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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Impact of phase ratio, polydimethylsiloxane volume and size, and sampling temperature and time on headspace sorptive extraction recovery of some volatile compounds in the essential oil field
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Impact of phase ratio, polydimethylsiloxane volume and size, and sampling temperature and time on headspace sorptive extraction recovery of some volatile compounds in the essential oil field

机译:相比,聚二甲基硅氧烷的体积和大小以及采样温度和时间对精油油田中某些挥发性化合物的顶空吸附萃取回收率的影响

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This study evaluates concentration capability of headspace sorptive extraction (HSSE) and the influence of sampling conditions on HSSE recovery of an analyte. A standard mixture in water of six high-to-medium volatility analytes (isobutyl methyl ketone, 3-hexanol, isoamyl acetate, 1,8-cineole, linalool and carvone) was used to sample the headspace by HSSE with stir bars coated with different polydimethylsiloxane (PDMS) volumes (20, 40, 55 and 110 mu L, respectively), headspace vial volumes (8, 21.2, 40, 250 and 1000 mL), sampling temperatures (25, 50 and 75 degrees C) and sampling times (30, 60 and 120 min, and 4, 8 and 16 h). The concentration factors (CFs) of HSSE versus static headspace (S-HS) were also determined. Analytes sampled by the PDMS stir bars were recovered by thermal desorption (TDS) and analysed by capillary GC-MS. This study demonstrates how analyte recovery depends on its physico-chemical characteristics and affinity for PDMS (octanol-water partition coefficients), sampling temperatures (50 degrees C) and times (60 min), the volumes of headspace (40 mL) and of PDMS (in particular, for high volatility analytes). HSSE is also shown to be very effective for trace analysis. The HSSE CFs calculated versus S-HS with a 1000 mL headspace volumes at 25 degrees C during 4 h sampling ranged between 10(3) and 10(4) times for all analytes investigated while the limits of quantitation determined under the same conditions were in the nmol/L range. (c) 2004 Elsevier B.V. All rights reserved.
机译:这项研究评估了顶空吸附萃取(HSSE)的浓缩能力以及采样条件对分析物HSSE回收率的影响。六种高至中度挥发性分析物(异丁基甲基酮,3-己醇,乙酸异戊酯,1,8-桉树脑,芳樟醇和香芹酮)在水中的标准混合物用于通过HSSE对顶空进样,搅拌棒涂有不同的聚二甲基硅氧烷(PDMS)体积(分别为20、40、55和110μL),顶空瓶体积(8、21.2、40、250和1000 mL),采样温度(25、50和75摄氏度)和采样时间( 30、60和120分钟,以及4、8和16小时)。还确定了HSSE与静态顶空(S-HS)的浓度因子(CFs)。 PDMS搅拌棒采样的分析物通过热脱附(TDS)进行回收,并通过毛细管GC-MS进行分析。这项研究证明了分析物的回收率如何取决于其理化特性和对PDMS的亲和力(辛醇-水分配系数),采样温度(50摄氏度)和时间(60分钟),顶空体积(40 mL)和PDMS (特别是对于高挥发性分析物)。 HSSE还被证明对痕量分析非常有效。在所有条件下,在相同条件下确定的定量限在4%的条件下,在25°C下于4 h采样期间在1000°C顶空体积下,在25°C下计算的HSSE CFs与S-HS的范围为10(3)和10(4)次。 nmol / L范围。 (c)2004 Elsevier B.V.保留所有权利。

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