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首页> 外文期刊>American journal of enology & viticulture >Measurement of 3-Alkyl-2-Methoxypyrazine by Headspace Solid-Phase Microextraction in Spiked Model Wines
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Measurement of 3-Alkyl-2-Methoxypyrazine by Headspace Solid-Phase Microextraction in Spiked Model Wines

机译:顶空固相微萃取测定加样葡萄酒中3-烷基-2-甲氧基吡嗪

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摘要

The effect of wine matrix ingredients and conditions on the headspace sampling of 3-alkyl-2-methoxy-pyrazines was investigated with solid-phase microextraction (SPME) and capillary gas chromatography, using a nitrogen phosphorus detector. Changes in the recovery of 3-ethyl-, isopropyl-, seobutyl-, and isobutyl-2-methoxypyrazines from the static headspace of synthetic wine matrices spiked with 5 μg/L of each analyte were investigated and reported as a function of SPME fiber type, extraction time, and temperature. The influence of pH, ethanol, phenolics, and oak was studied. Divinylbenzene/carboxen/poly-dimethylsiloxane (PDMS) SPME fibers at an extraction temperature of 50℃ for 30 minutes with 30% (w/v) added sodium chloride resulted in the highest analyte recoveries. Although PDMS (100 μm) SPME fibers at an extraction temperature of 35℃ for 30 minutes with 30% (w/v) added sodium chloride resulted in lower analyte recoveries, the fiber remained functional for 50 to 75 analyses after other coatings deteriorated. Changing the sample ethanol concentration from 0 to 20% (v/v) resulted in an exponential decrease in the recovered analytes. Below pH 2, there was extensive loss of the analytes in the headspace. No measurable impact on alkyl-methoxypyrazine headspace concentrations was observed with exposures to selected phenolics and to oak.
机译:使用固相微萃取(SPME)和毛细管气相色谱法,使用氮磷检测器,研究了葡萄酒基质成分和条件对3-烷基-2-甲氧基-吡嗪的顶空进样的影响。研究了掺入5μg/ L每种分析物的合成葡萄酒基质静态顶空中3-乙基,异丙基,二乙基丁基,异丁基和异丁基-2-甲氧基吡嗪的回收率变化,并将其报告为SPME纤维类型的函数,提取时间和温度。研究了pH,乙醇,酚醛和橡木的影响。二乙烯基苯/羧甲基/聚二甲基硅氧烷(PDMS)SPME纤维在50℃的萃取温度下30分钟,加入30%(w / v)的氯化钠可获得最高的分析物回收率。尽管PDMS(100μm)SPME纤维在35℃的萃取温度下30分钟(添加30%(w / v)的氯化钠)会导致较低的分析物回收率,但在其他涂层变质后,该纤维仍可进行50到75次分析。将样品乙醇浓度从0更改为20%(v / v)会导致回收的分析物呈指数下降。 pH低于2时,顶部空间中的分析物大量流失。暴露于选定的酚类和橡木中,未观察到对烷基-甲氧基吡嗪顶空浓度的可测量影响。

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