Fast Screening and Quantitation of Perfluorinated Sources from Textiles using Chemical Ionization GC-MS
Posters | 2017 | ShimadzuInstrumentation
The persistence and bioaccumulative potential of perfluorinated compounds in textiles pose significant environmental and health risks. Rapid screening and precise quantitation of PFOS/PFOA precursors are essential for regulatory compliance, quality control, and consumer safety assessment.
This work aimed to establish a fast gas chromatography–chemical ionization mass spectrometry (GC/CIMS) method for simultaneous detection and quantitation of four perfluoroalkyl sulfonamides (FOSAs/FOSEs) and three perfluorinated acrylates (FTAcrs). These analytes are known to degrade into PFOS and PFOA and are included in the OECD’s priority list since 2007.
Sample Preparation and Calibration:
This GC/CIMS approach delivers rapid throughput, high sensitivity, and robust quantitation for monitoring residual perfluorinated coatings. It supports industrial quality control, environmental screening, and compliance testing in textile manufacturing.
The optimized GC/CIMS method provides a fast, sensitive, and reliable protocol for quantifying key PFOS/PFOA precursors in textiles. Its validated performance in linearity, repeatability, and accuracy makes it suitable for routine screening and regulatory compliance.
GC/MSD, GC/SQ
IndustriesMaterials Testing
ManufacturerShimadzu
Summary
Significance of Topic
The persistence and bioaccumulative potential of perfluorinated compounds in textiles pose significant environmental and health risks. Rapid screening and precise quantitation of PFOS/PFOA precursors are essential for regulatory compliance, quality control, and consumer safety assessment.
Objectives and Study Overview
This work aimed to establish a fast gas chromatography–chemical ionization mass spectrometry (GC/CIMS) method for simultaneous detection and quantitation of four perfluoroalkyl sulfonamides (FOSAs/FOSEs) and three perfluorinated acrylates (FTAcrs). These analytes are known to degrade into PFOS and PFOA and are included in the OECD’s priority list since 2007.
Methodology and Instrumentation
Sample Preparation and Calibration:
- Textile extraction: 1 g sample with THF at 60 °C for 1 h, 0.45 µm filtration, 10× concentration.
- Matrix-matched calibration: spiking with naphthalene-D8 internal standard and D-sorbitol as analyte protectant.
- GC: SH-Rtx-200 column (30 m×0.32 mm×0.5 µm), splitless injection (2 µL), helium carrier gas at constant linear velocity, oven ramp from 80 °C to 260 °C.
- MS: Positive chemical ionization with methane, ion source 200 °C, SIM acquisition monitoring quantitative and qualitative ions per compound.
Main Results and Discussion
- Complete separation of seven targets plus ISTD within a 7 min run (±0.10 min retention tolerance).
- Excellent linearity (R² ≥ 0.999) in matrix-matched calibration for all analytes.
- Matrix effects: acrylates showed slight ion suppression; FOSEs exhibited enhancement—addressed by matrix-matched calibration.
- Detection limits: IDLs of 2–3 ng/mL, LOQs of 5 ng/mL (S/N > 10 for quantifier ions).
- Repeatability (%RSD) at low levels: 5.9–9.6%. Accuracy across QC levels within ±20% of nominal.
- Application: N-EtFOSE detected at 2.45 ng/mL in polyester sportswear; FTAcr 8:2 and 10:2 found at 76.3 ng/mL and 36.8 ng/mL in umbrella fabric.
Benefits and Practical Applications
This GC/CIMS approach delivers rapid throughput, high sensitivity, and robust quantitation for monitoring residual perfluorinated coatings. It supports industrial quality control, environmental screening, and compliance testing in textile manufacturing.
Future Trends and Applications
- Expansion to cover a broader spectrum of PFAS precursors and degradation products.
- Integration with high-resolution MS for non-targeted screening.
- Automation of extraction and preparation workflows for high-throughput analysis.
- Coupling with biological assays to assess toxicological impact of detected compounds.
Conclusion
The optimized GC/CIMS method provides a fast, sensitive, and reliable protocol for quantifying key PFOS/PFOA precursors in textiles. Its validated performance in linearity, repeatability, and accuracy makes it suitable for routine screening and regulatory compliance.
References
- Renner R. Perfluorinated Sources Outside and Inside. Environ Sci Technol. 2004;38(5):80A.
- OECD. Lists of PFOS, PFAS, PFOA, PFCA, related Compounds and Chemicals that may Degrade to PFCA. ENV/JM/MONO(2006)15.
- Yeong HX, Olivia S, Lahey CM, Ting GWE, Loo LC. Fast and Accurate Quantitation of Perfluorinated Sources from Textiles using Gas Chromatography–Triple Quadrupole Mass Spectrometry. ASMS. 2017;TP296.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Fast and Accurate Quantitation of Perfuorinated Sources from Textiles using Gas Chromatography-Triple Quadrupole Mass Spectrometry
2017|Shimadzu|Posters
PO-CON1732E Fast and Accurate Quantitation of Perfluorinated Sources from Textiles using Gas Chromatography-Triple Quadrupole Mass Spectrometry ASMS 2017 TP-296 Hui Xian Crystal Yeong1†, Stephany Olivia2, Cynthia Melanie Lahey1, Guo Wei Elgin Ting1, Lai Chin Loo1 1 Application Development & Support…
Key words
textiles, textilesperfluorinated, perfluorinatedmefose, mefosemefosa, mefosaetfosa, etfosaetfose, etfosesources, sourceswellington, wellingtonquantitation, quantitationtqms, tqmsmrm, mrmtriple, triplequadrupole, quadrupoleidl, idlspectrometry
Analyses of PFOS and PFOA Precursors in Textile Products Using EI-MRM and PCI-SIM Method
2018|Shimadzu|Applications
C146-E364 Technical Report Analyses of PFOS and PFOA Precursors in Textile Products Using EI-MRM and PCI-SIM Method Crystal Yeong1, Lai Chin Loo1, Yuki Sakamoto2 A b s tr a ct: Precursors of perfluoro compounds (PFCs) such as perfluorooctane sulfon-amides (FOSEs,…
Key words
mefose, mefosemefosa, mefosaetfosa, etfosaetfose, etfosepci, pcimrm, mrmwellington, wellingtonsim, simarea, areaqualitative, qualitativelaboratories, laboratoriesratios, ratiospfos, pfosapollo, apolloion
Analysis of Trace Perfluorinated and Polyfluorinated Organic Vapors in Air
2022|Agilent Technologies|Applications
Application Note Environmental Analysis of Trace Perfluorinated and Polyfluorinated Organic Vapors in Air Using cryogen-free thermal desorption and GC/MS Authors Abstract Laura Miles Markes International Ltd. Bridgend, UK This application note describes the sampling and analysis of a challenging range…
Key words
pfas, pfasfluorotelomer, fluorotelomertubes, tubessampling, samplingmefosa, mefosapfuda, pfudapfteda, pftedapftrda, pftrdapfdoa, pfdoaacrylates, acrylatespfpea, pfpeasorbent, sorbentpfba, pfbapfda, pfdapfhxa
Quantitation of volatile PFAS in environmental samples using SPME Arrow and Orbitrap Exploris GC
2025|Thermo Fisher Scientific|Applications
Application note | 003507 Environmental Quantitation of volatile PFAS in environmental samples using SPME Arrow and Orbitrap Exploris GC Authors Application benefits Dominic Roberts , John Quick , 1 2 • A simple and robust sample preparation for volatile PFAS…
Key words
target, targetpfas, pfaslandfill, landfillleachate, leachatespme, spmearrow, arrowhram, hramexploris, explorisstd, stdfose, fosemefosa, mefosaorbitrap, orbitrapvolatile, volatilemefose, mefosemass