Orellana Shirley, Johansen Anne M, Gazis Carey
Department of Chemistry, Central Washington University, 400 E. University Way, Ellensburg, WA 98926, United States.
Department of Geological Sciences, Central Washington University, 400 E. University Way, Ellensburg, WA 98926, United States.
Food Chem X. 2019 Feb 12;1:100007. doi: 10.1016/j.fochx.2019.100007. eCollection 2019 Mar 30.
Wine fraud leaves wineries vulnerable to damage in reputation and potential lost revenue. To reduce this risk for wines from Washington State (WA), USA, advanced analytical instrumentation and statistical methods were employed to geographically classify 133 wines from 4 major wine producing regions, including 70 wines from WA. Analyses of 37 elements and 2 water isotopes were performed with Triple Quadrupole Inductively Coupled Plasma Mass Spectrometry and Cavity Ring-Down Spectroscopy, respectively. Linear discriminant analysis resulted in 96.2% discrimination, achieved with 11 parameters (Mn, Zn, Pb, Ni, As, D/H, La, Ce, Si, Zr and Sr) that were linearly combined into 3 functions. WA wines were uniquely distinguished in large part with low D/H ratios and Mn concentrations derived from the isotopically light precipitation and volcanic loess soils encountered in this region, respectively. This study is the first of its kind to focus on the authentication of WA wines.
葡萄酒造假会使酒庄面临声誉受损和潜在收入损失的风险。为降低美国华盛顿州(WA)葡萄酒的这种风险,采用了先进的分析仪器和统计方法,对来自4个主要葡萄酒产区的133种葡萄酒进行地理分类,其中包括70种来自华盛顿州的葡萄酒。分别使用三重四极杆电感耦合等离子体质谱仪和光腔衰荡光谱仪对37种元素和2种水同位素进行了分析。线性判别分析的判别率达到96.2%,通过11个参数(锰、锌、铅、镍、砷、氘/氢、镧、铈、硅、锆和锶)实现,这些参数被线性组合成3个函数。华盛顿州的葡萄酒在很大程度上具有独特的特征,分别是低氘/氢比率和源自该地区同位素轻质降水和火山黄土土壤的锰浓度。这项研究是同类研究中首个专注于华盛顿州葡萄酒认证的研究。