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Controlling LC–SPE–NMR systems
24
Citations
12
References
2006
Year
EngineeringMagnetic ResonanceEnvironmental ChemistryChemical EngineeringSeparation ScienceGas ChromatographyAnalytical ChemistryLiquid ChromatographyBiophysicsChromatographyBiochemistryNmr ProbeTarget AnalyteChromatographic AnalysisLc–spe–nmr SystemsAnalyte BandResonanceMass SpectrometryEnvironmental ToxicologyMedicineNuclear Magnetic Resonance SpectroscopyDrug Analysis
There are several stages of the LC-SPE-NMR process that should be monitored closely to ensure an efficient isolation and concentration of the target analyte, for instance analyte break-through and compound transfer from the LC-SPE to the NMR probe. In this study, analyte break-through monitoring was performed with a UV detector and a mass spectrometer placed after the SPE unit. Easy break-through was a problem when attempting multiple trapping of various compounds using C18 SPE cartridges with the original commercial system. However, on lowering the flow rate over the SPE system and using SPE cartridges packed with porous carbon, the number of trappings possible increased five-fold. To increase control over the on-line SPE-NMR transfer, a gradient pump-UV system was used to elute compounds trapped on an SPE to an NMR probe. The analyte band was placed in the active volume of the probe by a stop-flow mechanism. The modified LC-SPE system was also coupled with off-line NMR analysis for determination of a degradation product of the insecticide monuron, present in the low ppm range.
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