Charles University, Third Faculty of Medicine, Department of Hygiene, Ruská 87, 100 00 Prague 10, Czech Republic.
Charles University, Faculty of Science, Department of Analytical Chemistry, Albertov 2030, 128 43 Prague 2, Czech Republic.
Food Chem. 2022 May 1;375:131858. doi: 10.1016/j.foodchem.2021.131858. Epub 2021 Dec 14.
The paper provides a comprehensive survey of the use of capillary and microchip electrophoresis in combination with contactless conductivity detection (CD) for the analysis of drinking water, beverages and foodstuffs. The introduction sets forth the fundamentals of conductivity detection anddescribes an axialCDversion. There is also a detailed discussion of the determination of inorganic ions, organic acids, fatty acids, amino acids, amines, carbohydrates, foreign substances and poisons from the standpoint of separation conditions, sample treatment and detection limits. Special attention is paid to the analysis of foodstuffs at microchips with emphasis on the employed material and connection of the microchip with the CD. The review attempts to draw attention to modern trends, such as dual-opposite injection, field-enhanced sample injection, electromembrane extraction and on-line combination of microdialysis with CE. CE/CD is characterised by high universality, high speed of analysis, simple sample preparation, small consumption of sample and other chemicals.
本文全面综述了毛细管电泳和微芯片电泳与非接触电导检测(CD)联用在饮用水、饮料和食品分析中的应用。引言部分阐述了电导检测的基本原理,并描述了轴向 CD 检测模式。此外,还从分离条件、样品处理和检测限等方面详细讨论了无机离子、有机酸、脂肪酸、氨基酸、胺、碳水化合物、外来物质和毒物的测定。特别关注了在微芯片上分析食品,重点介绍了所用的材料以及微芯片与 CD 的连接。本综述试图提请人们注意一些现代趋势,如双对向注射、场增强样品进样、电膜萃取和微透析与 CE 的在线联用。CE/CD 的特点是通用性高、分析速度快、样品制备简单、样品和其他化学试剂的消耗量小。