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基于固定相萃取柱的自动化多维分离技术的现状与未来趋势。

Current status and future trends on automated multidimensional separation techniques employing sorbent-based extraction columns.

机构信息

University of São Paulo, São Carlos, Institute of Chemistry of São Carlos, SP, Brazil.

出版信息

J Sep Sci. 2019 Jan;42(1):258-272. doi: 10.1002/jssc.201800824. Epub 2018 Oct 25.

Abstract

Determination of target analytes present in complex matrices requires a suitable sample preparation approach to efficiently remove the analytes of interest from a medium containing several interferers while at the same time preconcentrating them aiming to improve the output signal detection. Online multidimensional solid-phase separation techniques have been widely used for the analysis of different contaminants in complex matrices such as food, environmental, and biological samples, among others. These online techniques usually consist of two steps performed in two different columns (extraction and analytical column), the first being employed to extract the analytes of interest from the original medium and the latter to separate them from the interferers. The extraction column in multidimensional techniques presents a relevant role since their variations as building material (usually a tube), sorbent material, modes of application, and so on can significantly influence the extraction success. The main features of such columns are subject of constant research aiming improvements directly related to the performance of the separation techniques that utilize multidimensional analysis. The present review highlights the main features of extraction columns online coupled to chromatographic techniques, inclusive for in-tube solid-phase microextraction, online solid phase and turbulent flow, aiming the determination of analytes present at very low concentrations in complex matrices. It will critically describe and discuss some of the most common instrumental set up as well as comments on recent applications of these multidimensional techniques. Besides that, the authors have described some properties and enhancements of the extraction columns that are used as first dimension on these systems, such as type of column material (poly (ether ether ketone), fused silica, stainless steel, and other materials) and the way that the extractive phase is accommodated inside the tubing (filled and open tubular). Practical applications of this approach in fields such as environment, food, and bioanalysis are also presented and discussed.

摘要

测定复杂基质中存在的目标分析物需要合适的样品前处理方法,以便从含有多种干扰物的介质中有效地提取感兴趣的分析物,同时浓缩它们,以提高输出信号检测。在线多维固相分离技术已广泛应用于分析食品、环境和生物等复杂基质中的不同污染物。这些在线技术通常由两步组成,在两个不同的柱子(提取柱和分析柱)中进行,第一步用于从原始介质中提取感兴趣的分析物,第二步用于将它们与干扰物分离。多维技术中的提取柱起着重要的作用,因为它们在建筑材料(通常是管子)、吸附材料、应用模式等方面的变化可以显著影响提取的成功。这些柱子的主要特点是不断研究的主题,旨在改进与利用多维分析的分离技术的性能直接相关的改进。本综述重点介绍了在线与色谱技术相结合的提取柱的主要特点,包括管内固相微萃取、在线固相和湍流流动,旨在测定复杂基质中非常低浓度的分析物。它将批判性地描述和讨论一些最常见的仪器设置,并对这些多维技术的最新应用进行评论。此外,作者还描述了这些系统中作为第一维使用的提取柱的一些特性和增强,例如柱材料的类型(聚醚醚酮、熔融石英、不锈钢和其他材料)以及萃取相在管内的容纳方式(填充和开管)。还介绍和讨论了这种方法在环境、食品和生物分析等领域的实际应用。

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