...
首页> 外文期刊>Chemometrics and Intelligent Laboratory Systems >Three-way PARAFAC decomposition of chromatographic data for the unequivocal identification and quantification of compounds in a regulatory framework
【24h】

Three-way PARAFAC decomposition of chromatographic data for the unequivocal identification and quantification of compounds in a regulatory framework

机译:三通PARAFAC分解色谱数据,用于监管框架中化合物的明确鉴定及定量

获取原文
获取原文并翻译 | 示例
           

摘要

The growing demand for controls of foodstuffs, personal care products, medicines and the environment is unquestionable, as well as a better understanding of the toxicity of chemical products. This causes a growing need to propose methods of analysis for the unequivocal identification and quantification of analytes in complex samples. Several official organizations that regulate these aspects in pesticides, migrants or additives, have increased the requirements regarding the figures of merit, among others, for the unequivocal identification of the target analytes. The general recommendation is the use of the information provided by chromatographic techniques on the test sample, for example, the use of HPLC-DAD or GC-MS data. Therefore, for each sample, a data matrix formed by the response vector (absorbances or abundances) recorded at each retention time is available. A data array is obtained when the matrices corresponding to the calibration standards and the test samples are concatenated. There are several chemometric techniques with the second-order advantage that can handle data arrays, so target analytes can be identified and quantified using them even in the presence of interferents. In this work, PARAFAC has been considered as a good option. If the data array is trilinear, its analysis using PARAFAC/PARAFAC2 enables the unequivocal identification and quantification of the target analyze so that the result is valid according to the criteria imposed by the authorities. In this work, the chemometric methodology is explained through four different case studies related to the determination of analytes in complex matrices (bisphenol A migrated from polycarbonate, dichlobenil in onion, oxybenzone in sunscreen cosmetic creams and melamine migrated from melaware). This mull-way methodology solves the problems of the coelution of interferents that have a similar absorbance spectrum in HPLC-DAD (or share m/z ratios in GC-MS) with the target analyze or with the internal standard causing false-negative results with conventional identification methods. In addition, the PARAFAC decomposition of trilinear arrays enables the joint optimization of several analytical parameters (extraction, clean up, etc.) that control different sample pretreatments prior to the chromatographic determination of complex samples.
机译:对食品,个人护理产品,药品和环境的控制不断增长的需求毫无疑问,更好地了解化学产品的毒性。这导致越来越需要提出分析的分析方法和定量分析物中的复合样品中的分析方法。一些规范农药,移民或添加剂中的这些方面的若干官方组织增加了关于靶分之分析物明确鉴定的优点的数据的要求。一般推荐是使用色谱技术在测试样品上提供的信息,例如,使用HPLC-DAD或GC-MS数据。因此,对于每个样品,可获得在每个保留时间上记录的响应载体(吸收或丰度)形成的数据矩阵。当与校准标准和测试样品相对应的矩阵被连接时,获得数据阵列。存在几种化学计量技术,其具有可以处理数据阵列的二阶优势,因此即使在干扰器的存在下,也可以使用它们来识别和量化目标分析。在这项工作中,Parafac被认为是一个很好的选择。如果数据阵列是三线性的,则使用PARAFAC / PARAFA2的分析使目标分析的识别和量化能够根据当局施加的标准有效。在这项工作中,通过与复合基质中分析物的测定有关的四种不同的案例研究来解释化学计量方法(双酚A从聚碳酸酯迁移,洋葱中,氧气苯甲酮,阳光化妆品乳膏和三聚氰胺中的氧脂酮)。这种MPLID方法解决了在HPLC-DAD(或GC-MS中的M / Z比中具有类似的吸光度谱的干扰素的问题,其目标分析或用内标产生假阴性结果常规识别方法。此外,三轴阵列的PARAFAC分解使得能够在色谱法测定复杂样品的色谱测定之前控制不同样品预处理的几种分析参数(提取,清洁等)的联合优化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号