Nitriles - Analysis of C2-C4 nitriles and unsaturated hydrocarbons
Applications | 2011 | Agilent TechnologiesInstrumentation
In environmental and industrial contexts, low molecular weight nitriles and unsaturated hydrocarbons are indicators of air quality and process integrity. Their detection at trace levels supports regulatory compliance and risk assessment, as these compounds can be toxic, flammable, or serve as process markers.
This application note evaluates the performance of a capillary gas chromatography method using the Agilent CP-SilicaPLOT column for the separation and quantification of C2 to C4 nitriles alongside unsaturated hydrocarbons at ppm concentrations.
The analytical setup employs a GC capillary system equipped with an Agilent CP-SilicaPLOT column (0.32 mm × 30 m, 4 μm film) and flame ionization detection. Key operational parameters include a temperature program from 150 °C to 225 °C at 25 °C/min, nitrogen carrier gas at 50 kPa, split injection (100 mL/min) at 250 °C, and a sample volume of 1 μL in heptane.
The CP-SilicaPLOT column achieved sharp, well-resolved peaks for analytes including 1,3-butadiene, isoprene, acrylonitrile, propionitrile, and butyronitrile, along with unsaturates such as vinylcyclohexane and styrene. Baseline separation and symmetric peak shapes were observed, demonstrating column inertness and reproducibility at ppm levels.
Advances may include coupling with mass spectrometry for enhanced specificity, development of faster temperature programs or novel stationary phases for even lower detection limits, and field-deployable GC systems for on-site analysis.
The Agilent CP-SilicaPLOT column provides an effective solution for trace-level analysis of C2–C4 nitriles and unsaturated hydrocarbons, offering reliable separation, sensitivity, and inertness. It supports diverse applications in environmental testing and industrial process control.
GC, GC columns, Consumables
IndustriesEnvironmental
ManufacturerAgilent Technologies
Summary
Significance of C2-C4 Nitriles and Unsaturated Hydrocarbons Analysis
In environmental and industrial contexts, low molecular weight nitriles and unsaturated hydrocarbons are indicators of air quality and process integrity. Their detection at trace levels supports regulatory compliance and risk assessment, as these compounds can be toxic, flammable, or serve as process markers.
Objectives and Overview of the Study
This application note evaluates the performance of a capillary gas chromatography method using the Agilent CP-SilicaPLOT column for the separation and quantification of C2 to C4 nitriles alongside unsaturated hydrocarbons at ppm concentrations.
Methodology and Instrumentation
The analytical setup employs a GC capillary system equipped with an Agilent CP-SilicaPLOT column (0.32 mm × 30 m, 4 μm film) and flame ionization detection. Key operational parameters include a temperature program from 150 °C to 225 °C at 25 °C/min, nitrogen carrier gas at 50 kPa, split injection (100 mL/min) at 250 °C, and a sample volume of 1 μL in heptane.
Key Results and Discussion
The CP-SilicaPLOT column achieved sharp, well-resolved peaks for analytes including 1,3-butadiene, isoprene, acrylonitrile, propionitrile, and butyronitrile, along with unsaturates such as vinylcyclohexane and styrene. Baseline separation and symmetric peak shapes were observed, demonstrating column inertness and reproducibility at ppm levels.
Benefits and Practical Applications
- High sensitivity and selectivity for small nitriles and unsaturated hydrocarbons.
- Robust performance suitable for routine environmental monitoring and QA/QC in petrochemical industries.
- Simple sample preparation with heptane dilution allows rapid throughput.
Future Trends and Potential Applications
Advances may include coupling with mass spectrometry for enhanced specificity, development of faster temperature programs or novel stationary phases for even lower detection limits, and field-deployable GC systems for on-site analysis.
Conclusion
The Agilent CP-SilicaPLOT column provides an effective solution for trace-level analysis of C2–C4 nitriles and unsaturated hydrocarbons, offering reliable separation, sensitivity, and inertness. It supports diverse applications in environmental testing and industrial process control.
Reference
- Agilent Technologies, Inc. Application Note A01384, 2011.
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