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首页> 外文期刊>Applied Spectroscopy >Possibilities for Using Raman Spectroscopy to Determine the Amount of Analyte Directly from a Solid-Phase Extraction Cartridge in Water-Based Applications
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Possibilities for Using Raman Spectroscopy to Determine the Amount of Analyte Directly from a Solid-Phase Extraction Cartridge in Water-Based Applications

机译:在水基应用中使用拉曼光谱法直接从固相萃取小柱中测定分析物的可能性

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摘要

Raman spectroscopy is occasionally used as a detection technique in liquid chromatography. This paper shows that the amount of analyte can also be determined directly from a solid-phase extraction cartridge, which eliminates the need for solvents in the analysis. Transmission geometry was used in Raman probing of the sorbent bed and interferences from the tube material were reduced by using quartz glass instead of the commonly used plastic. Bonded-phase silica C18 was a test sorbent, and ethylbenzene, as a test analyte, was extracted from its water solutions. A detection limit of 3 μg/mL was obtained in the Raman calibration by using a univariate method with a CH band of the sorbent ligand as an internal standard. This is only an order of magnitude higher than what was estimated for liquid chromatography with the same Raman instrument as its detector. In addition, an optimal sorbent for each analyte can be chosen more freely if there is no need to bother about further elution of the analyte.
机译:拉曼光谱法有时用作液相色谱法中的检测技术。本文表明,还可以直接从固相萃取盒中测定分析物的量,从而消除了分析中对溶剂的需求。传输几何结构用于吸附剂床的拉曼探测,通过使用石英玻璃代替常用的塑料减少了来自管材的干扰。键合相二氧化硅C18是测试吸附剂,乙苯作为测试分析物是从其水溶液中提取的。在拉曼校准中,通过使用吸附剂配体的CH谱带作为内标的单变量方法获得的检测限为3μg/ mL。这仅比使用与检测器相同的拉曼仪器的液相色谱法估计的数量级高一个数量级。另外,如果不需要为分析物的进一步洗脱而烦恼,则可以更自由地选择每种分析物的最佳吸附剂。

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    《Applied Spectroscopy》 |2008年第12期|1378-1383|共6页
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