Environmental and Biochemical Sciences Group, The James Hutton Institute, Aberdeen, AB158QH, UK.
Environmental and Biochemical Sciences Group, The James Hutton Institute, Aberdeen, AB158QH, UK.
Anal Chim Acta. 2017 Jul 11;976:14-24. doi: 10.1016/j.aca.2017.04.041. Epub 2017 May 6.
Most methods used in the identification of counterfeit whisky have focused on the profiling of volatile organic congeners determined by gas chromatography. We tested the use of total reflection x-ray fluorescence (TXRF) for trace element analysis of whisky and application of the data as a potential tool in the identification of counterfeit samples. Twenty five whiskies that were produced in different regions of Scotland or were blends, 5 counterfeit whiskies, 1 unmatured grain whisky, and 1 matured grain whisky were analysed for 11 elements (P, S, Cl, K, Ca, Mn, Fe, Cu, Zn, Br and Rb). The effect of cold plasma ashing with oxygen on whisky residues evaporated on the TXRF reflector on the instrument performance was investigated. Cold plasma ashing with oxygen reduced beam scatter and improved the limits of detection but was ultimately deemed unnecessary. The element concentration data for whisky obtained by TXRF (after log transformation) was compared with the values obtained by inductively coupled plasma spectroscopy and showed correlation values (R) ≥ 0.942 for K, Mn and Cu: ≥ 0.800 for Ca, Fe and Rb; and ≥0.535 for P, S and Zn. The range of concentration values for individual elements was variable and principal components analysis of the elemental concentrations partially differentiated the whiskies by region or type but showed clear separation of the counterfeit samples from the other samples. Using the principal component scores of the elemental concentration data, linear discriminant analysis also distinguished the counterfeits from the other samples.
大多数用于鉴别假冒威士忌的方法都集中在通过气相色谱法对挥发性有机同系物的分析上。我们测试了使用全反射 X 射线荧光(TXRF)进行威士忌微量元素分析,并将数据应用作为鉴别假冒样品的潜在工具。对来自苏格兰不同地区或混合生产的 25 种威士忌、5 种假冒威士忌、1 种未成熟谷物威士忌和 1 种成熟谷物威士忌进行了 11 种元素(P、S、Cl、K、Ca、Mn、Fe、Cu、Zn、Br 和 Rb)的分析。研究了用氧气冷等离子体灰化处理涂覆在 TXRF 反射器上的威士忌残留对仪器性能的影响。用氧气冷等离子体灰化处理减少了光束散射并提高了检测限,但最终认为这是不必要的。用 TXRF 获得的威士忌元素浓度数据(经对数转换后)与电感耦合等离子体光谱法获得的值进行了比较,结果表明 K、Mn 和 Cu 的相关值(R)≥0.942;Ca、Fe 和 Rb 的相关值≥0.800;P、S 和 Zn 的相关值≥0.535。个别元素的浓度值范围变化较大,元素浓度的主成分分析部分根据地区或类型对威士忌进行了区分,但明显将假冒样品与其他样品区分开来。使用元素浓度数据的主成分得分,线性判别分析也可以将假冒品与其他样品区分开来。