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Detection of Orange Essential Oil Isopropyl Myristate and Benzyl Alcohol in Lemon Essential Oil by FTIR Spectroscopy Combined with Chemometrics

机译:通过FTIR光谱与化学计量学结合柠檬精油中橙色精油异丙基肌发动酸盐和苄醇的检测

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摘要

Essential oils are high-valued natural extracts that are involved in industries such as food, cosmetics, and pharmaceutics. The lemon essential oil (LEO) has high economic importance in the food and beverage industry because of its health-beneficial characteristics and desired flavor properties. LEO, similar to other natural extracts, is prone to being adulterated through economic motivations. Adulteration causes unfair competition between vendors, disruptions in national economies, and crucial risks for consumers worldwide. There is a need for cost-effective, rapid, reliable, robust, and eco-friendly analytical techniques to detect adulterants in essential oils. The current research developed chemometric models for the quantification of three adulterants (orange essential oil, benzyl alcohol, and isopropyl myristate) in cold-pressed LEOs by using hierarchical cluster analysis (HCA), principal component regression (PCR), and partial least squares regression (PLSR) based on FTIR spectra. The cold-pressed LEO was successfully distinguished from adulterants by robust HCA. PLSR and PCR showed high accuracy with high R2 values (0.99–1) and low standard error of cross-validation (SECV) values (0.58 and 5.21) for cross-validation results of the raw, first derivative, and second derivative FTIR spectra. The findings showed that FTIR spectroscopy combined with multivariate analyses has a considerable capability to detect and quantify adulterants in lemon essential oil.
机译:精油是高价值的自然提取物,参与食品,化妆品和药剂等行业。由于其健康有益的特点和所需的风味性能,柠檬精油(Leo)在食品和饮料行业具有很高的经济意义。 Leo,类似于其他自然提取物,容易通过经济动机掺假。掺假导致供应商之间的不公平竞争,国家经济中断以及全世界消费者对消费者的关键风险。需要具有成本效益,快速,可靠,稳健的和环保的分析技术,以检测精油中的掺杂剂。目前的研究通过使用分层聚类分析(HCA),主成分回归(PCR)和部分最小二乘回归量,在冷压Leos中制定了三种掺杂剂(橙色精油,苄醇和异丙基豆蔻酸盐)的化学计量模型。 (PLSR)基于FTIR光谱。通过稳健的HCA成功地与掺假剂成功地区分了冷压力的Leo。 PLSR和PCR以高R2值(0.99-1)和交叉验证(SECV)值(0.58和5.21)的低标准误差显示出高精度,用于原始,第一导数和第二衍生FTIR光谱的交叉验证结果。结果表明,FTIR光谱与多变量分析结合具有相当大的能力来检测和量化柠檬精油中的掺杂剂。

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