A True Six Channel Solution for Impurities in Ethylene
Applications | | SCION InstrumentsInstrumentation
Ethylene is a fundamental building block in the petrochemical industry, with annual production exceeding 100 million metric tonnes. Trace impurities in ethylene streams can compromise catalyst performance, product purity and process efficiency, leading to increased operational costs and downtime.
This study demonstrates a tailored six-channel gas chromatography (GC) solution for comprehensive impurity profiling in high-purity ethylene. The custom configuration aims to streamline analysis of permanent gases, light hydrocarbons, oxygenated compounds and sulfur species within a single integrated system.
Gas samples were loop-injected into two SCION 456-GC units, each fitted with three parallel channels. Optimization of separation and detection conditions was performed using a defined calibration mixture containing relevant gas concentrations.
Each channel achieved baseline separation of target analytes with excellent sensitivity. Repeatability studies (20 injections) showed relative standard deviations below 2%, typically under 0.5%, confirming system robustness. Chromatograms showcased clear resolution of hydrogen, permanent gases, light hydrocarbons, oxygenates and sulfur species.
The integrated six-channel GC setup enables rapid, reliable impurity screening of ethylene feedstocks, supporting quality control in petrochemical operations. The approach reduces analysis time and equipment footprint compared to multiple standalone instruments.
Advancements may include automation of data processing, coupling with mass spectrometry for enhanced identification, and expansion to other olefinic streams. Integration with online process analyzers could further improve real-time monitoring capabilities.
The SCION two-GC, six-channel solution delivers comprehensive impurity characterization in ethylene with high precision and throughput, representing a valuable tool for industrial QC and research laboratories.
GC
IndustriesEnergy & Chemicals
ManufacturerSCION Instruments
Summary
Importance of the Topic
Ethylene is a fundamental building block in the petrochemical industry, with annual production exceeding 100 million metric tonnes. Trace impurities in ethylene streams can compromise catalyst performance, product purity and process efficiency, leading to increased operational costs and downtime.
Objectives and Study Overview
This study demonstrates a tailored six-channel gas chromatography (GC) solution for comprehensive impurity profiling in high-purity ethylene. The custom configuration aims to streamline analysis of permanent gases, light hydrocarbons, oxygenated compounds and sulfur species within a single integrated system.
Methodology
Gas samples were loop-injected into two SCION 456-GC units, each fitted with three parallel channels. Optimization of separation and detection conditions was performed using a defined calibration mixture containing relevant gas concentrations.
Instrumentation Used
- GC Systems: Two SCION 456-GC instruments
- Columns: 5Å and 13X molecular sieves, SCION-Wax, SCION-5 and MAPD capillary phases
- Detectors: Dual thermal conductivity detectors (TCD) for H2, O2 and N2; flame ionization detector (FID) with methaniser for CO, CH4 and CO2; FID for oxygenates and light hydrocarbons; pulsed flame photometric detector (PFPD) for sulfur compounds
- Sample Introduction: Gas sampling valve with fixed-volume loop
Main Results and Discussion
Each channel achieved baseline separation of target analytes with excellent sensitivity. Repeatability studies (20 injections) showed relative standard deviations below 2%, typically under 0.5%, confirming system robustness. Chromatograms showcased clear resolution of hydrogen, permanent gases, light hydrocarbons, oxygenates and sulfur species.
Benefits and Practical Applications
The integrated six-channel GC setup enables rapid, reliable impurity screening of ethylene feedstocks, supporting quality control in petrochemical operations. The approach reduces analysis time and equipment footprint compared to multiple standalone instruments.
Future Trends and Potential Applications
Advancements may include automation of data processing, coupling with mass spectrometry for enhanced identification, and expansion to other olefinic streams. Integration with online process analyzers could further improve real-time monitoring capabilities.
Conclusion
The SCION two-GC, six-channel solution delivers comprehensive impurity characterization in ethylene with high precision and throughput, representing a valuable tool for industrial QC and research laboratories.
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