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Polyurethane Foam as an Effective Adsorbent for Pesticides in Air (GC Analysis)

Applications | 1998 | MerckInstrumentation
GC, Sample Preparation, Consumables
Industries
Environmental
Manufacturer
Merck

Summary

Importance of the Topic


The presence of semivolatile pesticides in indoor and ambient air poses significant health and environmental risks. Polyurethane foam (PUF) sampling offers an efficient, low-pressure method to trap both gaseous and particulate-bound pesticides, enabling accurate monitoring at trace levels.

Objectives and Study Overview


This application note examines the performance of PUF-based sampling cartridges for organochlorine pesticides in air. Key aims include evaluating cleaning protocols, analyzing background contamination, and measuring recovery rates for a suite of target compounds.

Methodology


PUF plugs were cleaned via Soxhlet extraction using acetone followed by ether/hexane, vacuum-dried, and stored in sealed, light-protected containers. Air sampling was conducted at 1–5 L/min over 4–24 hours using ORBO-1000 cartridges equipped with PUF plugs and quartz microfiber filters to capture aerosols and particulates. Extracts were recovered by Soxhlet extraction in ether/hexane, concentrated to 10 mL, and analyzed by gas chromatography with an electron capture detector.

Instrumentation Used


  • ORBO-1000 polyurethane foam sampling cartridges with reusable glass holders
  • 32 mm quartz microfiber filter cartridge assembly and stainless steel support
  • Soxhlet extraction apparatus
  • Gas chromatograph with ECD and SPB-608 capillary column (30 m × 0.53 mm, 0.5 µm film)
  • Helium carrier gas and direct injection inlet

Main Results and Discussion


Comparison of cleaned versus uncleaned PUF plugs demonstrated that thorough cleaning is essential to achieve low background levels, although recoveries of a 0.5 µg pesticide spike were comparable (67–111% cleaned, 56–95% uncleaned). The surrogate octachloronaphthalene confirmed consistent extraction efficiency. High flow rates enabled representative sampling and fast collection while maintaining analytical sensitivity.

Benefits and Practical Applications


  • Lightweight and portable sampling for personal and ambient monitoring
  • High sampling rates reduce collection times
  • Reusable PUF plugs and holders lower operational costs
  • Covers particulate and vapor phases without cross-contamination
  • Sensitive detection of chlorinated pesticides at trace concentrations

Future Trends and Potential Applications


Advancements may include coupling PUF with novel adsorbents for broader volatility ranges, integration into automated air monitoring systems, miniaturized sampling devices for personal exposure studies, and expansion to emerging contaminants beyond organochlorines.

Conclusion


Cleaned polyurethane foam in ORBO-1000 cartridges provides a robust, sensitive, and cost-effective approach for air monitoring of semivolatile pesticides. Validation studies confirm low backgrounds and reliable recoveries, supporting its routine use in environmental and occupational hygiene applications.

Reference


1. US EPA. Compendium of Methods for the Determination of Air Pollutants in Indoor Air: Chapter IP-8, Determination of Organochlorine Pesticides in Indoor Air, 1990.

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