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首页> 外文期刊>Chemistry & biodiversity >Chiral multidimensional gas chromatography (MDGC) and chiral GC-olfactometry with a double-cool-strand interface: Application to malodors
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Chiral multidimensional gas chromatography (MDGC) and chiral GC-olfactometry with a double-cool-strand interface: Application to malodors

机译:具有双冷链界面的手性多维气相色谱(MDGC)和手性GC嗅觉测定法:应用于恶臭

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Volatile sulfur compounds such as 3-methyl-3-sulfanylhexan-1-ol (1) are largely responsible for axillary-sweat malodors. In this work, we describe the determination of the enantiomer ratio of the trace constituent 1 and the odor description of its antipodes (R)- and (S)-1 by means of multidimensional gas chromatography (MDGC) in combination with chiral gas chromatography-olfactometry (GC-O). This technique allowed the on-line evaluation of the sensory character of both enantiomers via a sniffing port, and is based on a novel double-cool-strand interface (DCSI). First, the system's inertness was tested towards the labile compound 2-methylfuran-3-thiol (MFT - 2). Then, the DCSI was used in a new configuration to achieve olfactive characterization by means of chiral GC-O. In contrast to direct smelling after the chiral column, our technique allows, for the first time, to significantly delay the perception of the second-eluting enantiomer after the first one. This lowers the risk of sensory saturation, as the panelist can recover from the first stimulus, before evaluating the second one. To help programming the DCSI, a dedicated program was set up. The enantiomer ratio of the sweat malodor 1 was determined as (S)/(R) 3:1, and the dominating (S)-isomer was shown to largely impart its specific character to the overall odor of the sweat extract.
机译:挥发性硫化合物(例如3-甲基-3-硫烷基己基-1-醇(1))是造成腋臭臭味的主要原因。在这项工作中,我们描述了通过多维气相色谱(MDGC)结合手性气相色谱法测定痕量成分1的对映异构体比例及其对映体(R)-和(S)-1的气味描述。嗅觉测定法(GC-O)。该技术允许通过嗅探端口在线评估两种对映异构体的感官特性,并且基于一种新颖的双冷链界面(DCSI)。首先,测试了系统对不稳定化合物2-甲基呋喃-3-硫醇(MFT-2)的惰性。然后,将DCSI用于新配置中,以通过手性GC-O实现嗅觉表征。与在手性柱后直接闻起来相反,我们的技术首次允许显着延迟对第一个洗脱后的第二个洗脱对映体的感知。这可以降低感官饱和的风险,因为专门小组成员可以在评估第二个刺激之前从第一个刺激中恢复过来。为了帮助对DCSI进行编程,设置了专用程序。汗臭味1的对映体比率确定为(S)/(R)3∶1,并且显示出主要的(S)-异构体极大地赋予了汗液提取物的总体气味其特定特征。

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