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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A novel electroanalytical approach based on the use of a room temperature ionic liquid for the determination of olive oil acidity
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A novel electroanalytical approach based on the use of a room temperature ionic liquid for the determination of olive oil acidity

机译:一种基于室温离子液体测定橄榄油酸度的新颖电分析方法

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摘要

In this paper, a novel voltammetric/amperometric approach for the direct determination of free acidity (FFA, expressed as mass percentage of free oleic acid) in olive oil samples is presented. The method is based on the reduction processes occurring at a platinum microdisk electrode involving the free fatty acids present in the matrices. To overcome problems related to the low conductivity of the samples investigated, olive oils were mixed with suitable amounts of the room temperature ionic liquid (RTIL), tri-hexyl(tetradecyl)phosphonium bis (trifluoromethylsulfonyl) imide ([P-14,P-6,P-6,P-6](+)[NTf2](-)), which acted as a supporting electrolyte. Conditions for a reliable quantification of the acids were preliminarily investigated by performing voltammetric and chronoamperometric measurements in RTIL solutions containing oleic acid at different concentrations. Oleic acid (OA) was chosen as a model compound as it is the main component of the FFA content in olive oils. In order to establish the effect of oxygen on the electroanalytical responses, the reduction process of OA was investigated under both deoxygenated and oxygenated conditions. It was found that, in both situations, the current arising from the electrode process of OA depended linearly on the OA concentration over a wide range varying from 0.1% to 8% OA (w/w). This range includes FFA values which can be found on all categories of commercially available oil samples, including extra-virgin, virgin and lampante oils. Voltammetric and chronoamperometric experiments were also performed in oil/RTIL samples artificially acidified (extra-virgin olive oils with known addition of oleic acid) and in natural olive oils from some commercial categories. The results obtained indicated that the electrochemical procedure developed was satisfactory in terms of both sensitivity and detection limits. The reliability of the proposed approach for the detection of FFA was finally assessed by comparison of the voltammetric/chronoamperometric values with those obtained by the official method for quantification of olive oil acidity, which is an acid/base volumetric titration.
机译:本文提出了一种直接测定橄榄油样品中游离酸度(FFA,以游离油酸质量百分比表示)的新颖伏安法。该方法基于在铂微盘电极上发生的还原过程,该还原过程涉及基质中存在的游离脂肪酸。为克服与所研究样品的低电导率相关的问题,将橄榄油与适量的室温离子液体(RTIL),三己基(十四烷基)phosph双(三氟甲基磺酰基)酰亚胺([P-14,P- 6,P-6,P-6](+)[NTf2](-)),起支撑电解质的作用。通过在含有不同浓度油酸的RTIL溶液中进行伏安法和计时电流法测量,初步研究了酸的可靠定量条件。选择油酸(OA)作为模型化合物,因为它是橄榄油中FFA含量的主要成分。为了建立氧气对电分析响应的影响,在脱氧和氧化条件下研究了OA的还原过程。已经发现,在两种情况下,OA的电极过程所产生的电流线性地取决于OA浓度,该浓度在OA(w / w)的0.1%至8%之间变化。此范围包括FFA值,该值可以在所有类别的市售油样中找到,包括特级初榨,初榨和兰彭特油。伏安法和计时安培法实验也在人工酸化的油/ RTIL样品(已知添加油酸的特级初榨橄榄油)和某些商业类别的天然橄榄油中进行。获得的结果表明,开发的电化学程序在灵敏度和检测限方面均令人满意。最后,通过将伏安/计时安培值与通过官方定量橄榄油酸度定量方法(即酸/碱体积滴定法)获得的伏安/计时安培值进行比较,评估了所提出方法检测FFA的可靠性。

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