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Off-line coupling of subcritical water extraction with subcritical water chromatography via a sorbent trap and thermal desorption

机译:亚临界水萃取与亚临界水色谱通过吸附阱和热脱附的离线耦合

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In this study, the off-line coupling of suberitical water extraction (SBWE) with subcritical water chromatography (SBWC) was achieved using a sorbent trap and thermal desorption. The sorbent trap was employed to collect the extracted analytes during subcritical water extraction. After the extraction, the trap was connected to the subcritical water chromatography system, and thermal desorption of the trapped analytes was performed before the SBWC run. The thermally desorbed analytes were then introduced into the subcritical water separation column and detected by a UV detector. Anilines and phenols, were extracted from sand and analyzed using this off-line coupling technique. Subcritical water extraction of flavones from orange peel followed by subcritical water chromatographic separation was also investigated. The effects of water volume and extraction temperature on flavone recovery were determined. Because a sorbent trap was used to collect the extracted analytes, the sensitivity of this technique was greatly enhanced as compared to that of suberitical water extraction with solvent trapping. Since no organic solvent-water extractions were necessary prior to analysis, this technique eliminated any use of organic solvents in both extraction and chromatography processes. [References: 39]
机译:在这项研究中,使用吸附阱和热脱附实现了地下水萃取(SBWE)与亚临界水色谱(SBWC)的离线耦合。在亚临界水萃取过程中,使用吸附剂捕集器收集萃取的分析物。萃取后,将捕集阱连接至亚临界水色谱系统,并在SBWC运行之前对捕集的分析物进行热脱附。然后将热解吸的分析物引入亚临界水分离塔中,并通过紫外线检测器进行检测。从沙子中提取苯胺和苯酚,并使用这种离线耦合技术进行分析。还研究了亚临界水从橙皮中提取黄酮,然后进行亚临界水色谱分离。确定了水量和提取温度对黄酮回收率的影响。因为使用了吸附阱来收集提取的分析物,所以与使用溶剂阱的地下水萃取相比,该技术的灵敏度大大提高了。由于在分析之前无需有机溶剂-水萃取,因此该技术消除了萃取和色谱过程中有机溶剂的使用。 [参考:39]

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