首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Supercritical fluid chromatography as a rapid single-step method for the determination of mineral oil saturated and aromatic hydrocarbons in purified mineral oils for food and cosmetics applications
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Supercritical fluid chromatography as a rapid single-step method for the determination of mineral oil saturated and aromatic hydrocarbons in purified mineral oils for food and cosmetics applications

机译:超临界流体色谱作为纯化矿物油中矿物油饱和烃的快速单步法,用于食品和化妆品应用

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Mineral oil hydrocarbons are used in the consumer goods sector for the elaboration of a wide range of foods and cosmetics. Traditional methods for determining their levels and composition are time consuming and laborious, besides requiring complex instrumentation. Here a simple and fast method was developed that uses columns packed with silver-modified silica in supercritical fluid chromatography with flame ionization and UV detection (SFC-FID/UV) for the determination of mineral oil saturated hydrocarbons (MOSH) and mineral oil aromatic hydrocarbons (MOAH) in purified mineral oil samples. The method requires no sample preparation apart from dilution. Direct quantification of MOSH and MOAH was possible for samples with MOSH/MOAH ratios around one. For other samples deconvolution of the MOSH and MOAH humps in the FID chromatogram using the UV signal was needed since baseline separation of the two fractions could not be obtained. Validation of the method performance showed an . excellent linearity (R-2 > 0.9995) in the range of concentrations tested (2.5-100 mgmL(-1)) and a better repeatability than the standard methods (<5%). MOAH detection limits were better than 0.36% MOAH, which makes the method sufficiently sensitive for analysis of all but the highest purity mineral oils. The proposed SFC-FID/UV method was suitable for the analysis of mineral oils with viscosities and molecular weights below approximately 56 mm(2 )s(-1) and 450 gmol(-1). The quantitative results of the new method were not statistically significantly different from those obtained with the standard SPE-GC-FID method where the new method has the advantages of a better repeatability, simpler operation and a significantly shortened analysis time. This new method could potentially also be used for the analysis of mineral oil contaminations in consumer products such as foods. However, in this case additional sample clean-up and preconcentration steps are needed for reducing matrix interferences from e.g. triglycerides and olefins and for improving the detection limits. (C) 2019 The Authors. Published by Elsevier B.V.
机译:矿物油烃在消费品领域用于范围广泛的食品和化妆品的阐述。用于确定它们的含量和组合物的传统方法是费时和费力的,除了要求复杂仪器。这里的简单且快速的方法的开发,使用列填充了与火焰离子化和UV检测(SFC-FID / UV)为矿物油饱和烃(MOSH)的确定超临界流体色谱银改性的二氧化硅和矿物油的芳烃(MOAH)纯化矿物油样品英寸该方法不需要样品制备除了稀释。 MOSH和MOAH的直接定量是可能的用于与MOSH / MOAH比围绕一个样本。对于其它样品的去卷积的MOSH的和MOAH使用需要,因为不能得到两个级分的基线分离UV信号在FID色谱隆起。该方法的性能验证表明的。优异的线性度(R-2> 0.9995)浓度的测试范围内(2.5-100 mgmL(-1)),并且比所述的标准方法(<5%)更好的可重复性。 MOAH检测限比0.36%MOAH,这使得该方法对于所有的分析,但最高纯度的矿物油不够敏感更好。所提出的SFC-FID / UV方法适用于矿物油的粘度与和分子量分析下面大约5600毫米(2)S(-1)和450 gmol的(-1)。新方法的定量结果不从与标准SPE-GC-FID方法,其中所述新的方法具有较好的可重复性,简单的操作和显著缩短分析时间的优点获得的那些统计学显著不同。这种新方法有可能也被用于矿物油污染在消费类产品的分析,如食品。然而,在这种情况下,需要用于从例如减少基质干扰附加的样品净化和富集步骤甘油三酯和烯烃和用于提高检测限。 (c)2019年作者。由elsevier b.v出版。

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