Suppr超能文献

用超热水萃取。

Extractions with superheated water.

作者信息

Smith Roger M

出版信息

J Chromatogr A. 2002 Oct 25;975(1):31-46. doi: 10.1016/s0021-9673(02)01225-6.

Abstract

As the temperature of liquid water is raised under pressure, between 100 and 374 degrees C, the polarity decreases markedly and it can be used as an extraction solvent for a wide range of analytes. Most interest has been in its application for the determination of PAHs, PCBs, and pesticides from environmental samples, where it gives comparable results to Soxhlet extraction but more rapidly and without the use of significant volumes of organic solvents. Unlike SPE, n-alkanes are not extracted unless the pressure is reduced and steam is used. Other applications have included the extraction of essential oils from plant material where it preferentially extracts the economically more important oxygenated components compared to steam distillation. The aqueous extract has been concentrated in a number of different methods (solvent extraction, SPE, SPME, extraction disc) or the extraction can be linked on-line to LC or GC. In many cases the superheated water extraction is cleaner, faster and cheaper than the conventional extraction methods.

摘要

在压力下将液态水的温度升高至100到374摄氏度之间时,其极性会显著降低,并且可以用作多种分析物的萃取溶剂。人们对其在环境样品中多环芳烃、多氯联苯和农药测定方面的应用最为关注,在此应用中,它能给出与索氏萃取相当的结果,但速度更快且无需使用大量有机溶剂。与固相萃取不同,除非减压并使用蒸汽,正构烷烃不会被萃取。其他应用还包括从植物材料中萃取香精油,与蒸汽蒸馏相比,它能优先萃取出经济价值更高的含氧化合物。水提取物已经通过多种不同方法(溶剂萃取、固相萃取、固相微萃取、萃取圆盘)进行了浓缩,或者萃取过程可以与液相色谱或气相色谱在线联用。在许多情况下,超热水萃取比传统萃取方法更清洁、更快且更便宜。

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