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Semi-Quantitative Analysis of Anions in Water by HS-GC/MS

Applications | 2021 | ShimadzuInstrumentation
GC/MSD, HeadSpace, GC/SQ
Industries
Environmental
Manufacturer
Shimadzu

Summary

Importance of Topic


Monitoring anion levels in water is essential for ensuring drinking water safety, detecting environmental contamination, and evaluating purification technologies such as reverse osmosis.

Objectives and Study Overview


This work applies headspace GC–MS with automated pentafluorobenzyl derivatization to semi-quantitatively analyze fluoride, chloride, and thiocyanate in aqueous samples, aiming to improve peak identification and detect non-target species.

Methodology and Instrumentation


Derivatization of target anions was performed directly in headspace vials using pentafluorobenzyl p-toluenesulfonate reagent, heated at 80 °C for 5 min. Separation was achieved on an SH-Rxi-5 MS column with helium carrier gas under a temperature program from 40 °C to 240 °C. MS detection employed electron ionization in simultaneous SIM and scan modes over m/z 35–400.
  • GC–MS System: Shimadzu GCMS-QP2020 NX
  • Headspace Sampler: HS-20
  • Column: SH-Rxi-5 MS (30 m × 0.25 mm, 0.25 μm)

Main Results and Discussion


Derivatives exhibited distinct retention times at 3.4 min (PFB-F), 5.0 min (PFB-Cl), and 7.8 min (PFB-SCN), with characteristic EI spectra matching theoretical m/z values. Calibration at 50 µg/mL and detection at 5 µg/mL confirmed system sensitivity. Simultaneous acquisition of full scan data permitted identification of unexpected co-eluting contaminants.

Benefits and Practical Applications


The automated headspace derivatization streamlines sample preparation and enhances analytical throughput. Combined GC–MS detection increases confidence in anion identification and allows comprehensive screening of water samples in environmental monitoring and quality control.

Future Trends and Potential Applications


Advancements such as high-resolution MS and refined SIM methods could lower detection limits and improve speciation. Development of portable headspace GC–MS platforms promises on-site water quality assessment for rapid contamination response.

Conclusion


Automated headspace GC–MS with pentafluorobenzyl derivatization offers a robust semi-quantitative approach for analyzing anions in water, delivering reliable identification and extended screening capabilities for environmental and industrial applications.

Reference


Nakagawa Y. Semi-Quantitative Analysis of Anions in Water by HS-GC/MS; Shimadzu Application News; April 2021.

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