Phthalate Esters on Equity-5
Applications | 2003 | MerckInstrumentation
Phthalate esters are widely used plasticizers and recognized as potential endocrine disruptors. The U.S. EPA classifies several phthalates as priority pollutants, underscoring the need for reliable analytical methods for environmental and product safety monitoring.
The analysis employed gas chromatography with flame ionization detection (GC-FID). A 30 m × 0.25 mm i.d., 0.25 µm Equity-5 column was used. Samples (50 ng on-column) were injected splitless (1 µL) at 250 °C, with an oven program from 40 °C (1 min) to 325 °C at 10 °C/min. Helium served as the carrier gas at a constant flow of 1.3 mL/min, ensuring optimal peak symmetry and low baseline noise.
The Equity-5 column achieved baseline separation of all 17 target esters within a 28-minute runtime. Peaks exhibited sharp, symmetric profiles, and low column bleed maintained detector baseline stability at high final temperatures. The resolution met or exceeded requirements of EPA Methods 8061A, 506 and 606, facilitating unambiguous identification and quantitation.
Integration with GC/MS or two-dimensional GC can provide confirmatory power for coeluting isomers. Method adaptation for emerging phthalate analogs and stricter regulatory limits will drive innovation in faster temperature programming and novel stationary phases. Portable GC platforms may enable on-site phthalate monitoring.
The Equity-5 capillary column delivers a robust, high-resolution solution for routine analysis of priority phthalate esters, offering improved sensitivity, low bleed and compliance with U.S. EPA methods.
GC, GC columns, Consumables
IndustriesEnvironmental
ManufacturerMerck
Summary
Significance of the Topic
Phthalate esters are widely used plasticizers and recognized as potential endocrine disruptors. The U.S. EPA classifies several phthalates as priority pollutants, underscoring the need for reliable analytical methods for environmental and product safety monitoring.
Study Objectives
- Separate all 17 phthalate esters defined in EPA Methods 8061A, 506 and 606 on a single chromatographic column.
- Evaluate the Equity-5 capillary column for resolution and thermal stability.
- Demonstrate method suitability as a primary analytical approach without immediate reliance on confirmatory columns.
Methodology and Instrumentation
The analysis employed gas chromatography with flame ionization detection (GC-FID). A 30 m × 0.25 mm i.d., 0.25 µm Equity-5 column was used. Samples (50 ng on-column) were injected splitless (1 µL) at 250 °C, with an oven program from 40 °C (1 min) to 325 °C at 10 °C/min. Helium served as the carrier gas at a constant flow of 1.3 mL/min, ensuring optimal peak symmetry and low baseline noise.
Used Instrumentation
- GC system: Waters GC 9499 with HPCS53 acquisition.
- Column: Equity-5, 30 m × 0.25 mm ID, 0.25 µm film.
- Detector: FID at 325 °C.
- Injector: Splitless, 250 °C, 0.75 min purge.
- Carrier gas: Helium, 1.3 mL/min constant flow.
Results and Discussion
The Equity-5 column achieved baseline separation of all 17 target esters within a 28-minute runtime. Peaks exhibited sharp, symmetric profiles, and low column bleed maintained detector baseline stability at high final temperatures. The resolution met or exceeded requirements of EPA Methods 8061A, 506 and 606, facilitating unambiguous identification and quantitation.
Benefits and Practical Applications
- Single-column separation simplifies workflow and reduces analysis time.
- Low thermal bleed enhances detector performance and extends column longevity.
- High resolution supports accurate quantitation in environmental and quality-control laboratories.
Future Trends and Opportunities
Integration with GC/MS or two-dimensional GC can provide confirmatory power for coeluting isomers. Method adaptation for emerging phthalate analogs and stricter regulatory limits will drive innovation in faster temperature programming and novel stationary phases. Portable GC platforms may enable on-site phthalate monitoring.
Conclusion
The Equity-5 capillary column delivers a robust, high-resolution solution for routine analysis of priority phthalate esters, offering improved sensitivity, low bleed and compliance with U.S. EPA methods.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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