Sun Shi-Hao, Xie Jian-Ping, Xie Fu-Wei, Zong Yong-Li
ZhengZhou Tobacco Research Institute, China National Tobacco Corporation, ZhengZhou 450001, China.
J Chromatogr A. 2008 Feb 1;1179(2):89-95. doi: 10.1016/j.chroma.2007.11.102. Epub 2007 Dec 5.
A method coupling needle-based derivatization headspace liquid-phase microextraction with gas chromatography-mass spectrometry (HS-LPME/GC-MS) was developed to determine volatile organic acids in tobacco. The mixture of N,O-bis(trimethylsilyl)trifluoroacetamide and decane was utilized as the solvent for HS-LPME, resulting that extraction and derivatization were simultaneously completed in one step. The solvent served two purposes. First, it pre-concentrated volatile organic acids in the headspace of tobacco sample. Second, the volatile organic acids extracted were derivatized to form silyl derivatives in the drop. The main parameters affecting needle-based derivatization HS-LPME procedure such as extraction and derivatization reagent, microdrop volume, extraction and derivatization time, and preheating temperature and preheating time were optimized. The standard addition approach was essential to obtain accurate measurements by minimizing matrix effects. Good linearity (R(2)> or =0.9804) and good repeatability (RSDs< or =15.3%, n=5) for 16 analytes in spiked standard analytes sample were achieved. The method has the additional advantages that at the same time it is simple, fast, effective, sensitive, selective, and provides an overall profile of volatile organic acids in the oriental tobacco. This paper does offer an alternative approach to determine volatile organic acids in tobacco.
建立了一种基于针的衍生化顶空液相微萃取与气相色谱-质谱联用(HS-LPME/GC-MS)的方法来测定烟草中的挥发性有机酸。采用N,O-双(三甲基硅基)三氟乙酰胺和癸烷的混合物作为HS-LPME的溶剂,使得萃取和衍生化在一步中同时完成。该溶剂有两个作用。第一,它对烟草样品顶空中的挥发性有机酸进行预浓缩。第二,萃取的挥发性有机酸在液滴中衍生化形成硅烷基衍生物。对影响基于针的衍生化HS-LPME过程的主要参数,如萃取和衍生化试剂、微滴体积、萃取和衍生化时间以及预热温度和预热时间进行了优化。标准加入法对于通过最小化基质效应获得准确测量至关重要。在加标标准分析物样品中,16种分析物具有良好的线性(R(2)≥0.9804)和良好的重复性(RSDs≤15.3%,n = 5)。该方法还具有简单、快速、有效、灵敏、选择性好等优点,并且能够提供香料烟中挥发性有机酸的整体概况。本文确实提供了一种测定烟草中挥发性有机酸的替代方法。