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On-line LC-GC Coupling - A New Method for the Determination of Al kyl phe nols in Environmental Samples

Applications | 1998 | GERSTELInstrumentation
GC, HPLC
Industries
Environmental
Manufacturer
Agilent Technologies, GERSTEL

Summary

Importance of the Topic


Due to their widespread use in industrial and household applications, alkylphenolethoxylates (APEOs) and their degradation products pose significant environmental and health risks as persistent and estrogenically active pollutants. Sensitive monitoring at ultra-trace levels and isomeric differentiation are essential for accurate risk assessment.

Objectives and Study Overview


This study presents an innovative on-line liquid chromatography–gas chromatography (LC–GC) coupling technique that directly transfers defined HPLC fractions into a pulsed temperature vaporizer (PTV) GC, enabling the determination of alkylphenols and ethoxylates in environmental water, sludge, and biological samples.

Methodology and Instrumentation


Sample preparation involved steam distillation, liquid–liquid extraction, and concentration followed by n-hexane reconstitution. Key instrumental components included:
  • HPLC: Zorbax NH2 column (150×4.6 mm, 5 μm), hexane/2-propanol (80/20) isocratic elution at 1 mL/min, fluorescence detection.
  • Interface: flow cell with large volume sampler (10–1000 μL), PTV inlet using solvent venting/stop-flow for analyte enrichment.
  • GC: DB-5 capillary column (30 m×0.32 mm, 0.25 μm), helium carrier gas (40 kPa), programmed oven (40–280 °C), FID detection.


Main Results and Discussion


The on-line LC–GC system achieved clear separation of nonylphenol isomers and the internal standard in river water, sewage sludge, and bottled mineral water. Detection limits reached low ng/L levels in aqueous samples and mg/kg in sludge. Enhanced signal-to-noise ratios minimized matrix interferences and facilitated detailed isomer analysis critical for evaluating estrogenic potential.

Benefits and Practical Applications


  • Automated transfer reduces sample handling and loss.
  • Large volume injection with PTV enables ultra-trace detection.
  • Isomeric resolution supports assessment of pseudo-estrogenic activity.
  • Applicable to diverse matrices including water, sludge, and biological tissues.


Future Trends and Potential Applications


The method promises extension to additional environmental contaminants and biological samples (e.g., mussels, eggs). Integration with mass spectrometry could further improve selectivity, while advances in microfluidic interfaces and real-time monitoring may enable on-site environmental surveillance.

Conclusion


On-line LC–GC coupling with large volume PTV injection offers a robust, sensitive, and selective analytical workflow for ultra-trace determination of alkylphenols, providing significant advantages over standalone chromatographic methods and supporting comprehensive environmental risk evaluations.

References


  1. Poremski H.J., Use pattern of nonylphenolethoxylates and application properties, Swedish EPA Report 3907, 1991.
  2. Giger W., Stephanou E., Schaffner C., Chemosphere 10 (1981) 1253–1263.
  3. McLeese D., Zitko V., Metcalfe C., Sergeant D., Chemosphere 9 (1980) 79–82.
  4. Soto A., Justicia H., Wray J., Sonnenschein C., Environmental Health Perspectives 92 (1991) 167–173.

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