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采用顶空固相微萃取和脉冲火焰光度检测的气相色谱分析及稳定同位素稀释法进行定量分析的方法,对低分子量硫挥发物进行分析。

Headspace solid-phase microextraction and gas chromatographic analysis of low-molecular-weight sulfur volatiles with pulsed flame photometric detection and quantification by a stable isotope dilution assay.

机构信息

Dienstleistungszentrum Ländlicher Raum (DLR) Rheinpfalz, Institute for Viticulture and Oenology, Neustadt an der Weinstraße, Germany.

Faculty for Chemistry, Food Chemistry, Kaiserslautern University of Technology, Kaiserslautern, Germany.

出版信息

J Sep Sci. 2018 Feb;41(4):899-909. doi: 10.1002/jssc.201700649. Epub 2017 Dec 27.

Abstract

Low-molecular-weight volatile sulfur compounds such as thiols, sulfides, disulfides as well as thioacetates cause a sulfidic off-flavor in wines even at low concentration levels. The proposed analytical method for quantification of these compounds in wine is based on headspace solid-phase microextraction, followed by gas chromatographic analysis with sulfur-specific detection using a pulsed flame photometric detector. Robust quantification was achieved via a stable isotope dilution assay using commercial and synthesized deuterated isotopic standards. The necessary chromatographic separation of analytes and isotopic standards benefits from the inverse isotope effect realized on an apolar polydimethylsiloxane stationary phase of increased film thickness. Interferences with sulfur-specific detection in wine caused by sulfur dioxide were minimized by addition of propanal. The method provides adequate validation data, with good repeatability and limits of detection and quantification. It suits the requirements of wine quality management, allowing the control of oenological treatments to counteract an eventual formation of excessively high concentration of such malodorous compounds.

摘要

低分子量挥发性硫化合物,如硫醇、硫化物、二硫化物以及硫代乙酸盐,即使在低浓度水平下也会导致葡萄酒产生硫化物异味。本研究提出的用于葡萄酒中这些化合物定量分析的方法基于顶空固相微萃取,随后进行气相色谱分析,采用脉冲火焰光度检测器进行硫特异性检测。通过使用商业合成的氘代同位素标准品进行稳定同位素稀释分析,实现了稳健的定量。分析物和同位素标准品的必要色谱分离得益于在增加膜厚度的非极性聚二甲基硅氧烷固定相上实现的反同位素效应。通过添加丙醛,最大限度地减少了葡萄酒中二氧化硫对硫特异性检测的干扰。该方法提供了充分的验证数据,具有良好的重复性、检测限和定量限。它符合葡萄酒质量管理的要求,允许控制酿造处理以对抗此类恶臭化合物浓度过高的形成。

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