New Application Specific Columns for Semi-volatile and ECD Methods Lead the Way to Higher Productivity in Environmental Laboratories
Presentations | 2012 | Agilent TechnologiesInstrumentation
Environmental monitoring requires robust gas chromatography solutions to reliably detect semi-volatile organic compounds and chlorinated analytes at trace levels. High inertness, selectivity, and throughput are essential for regulatory compliance and quality control in environmental laboratories.
This article reviews two new Agilent J&W column families: DB-UI 8270D for semi-volatile GC/MS analysis and DB-CLP1/DB-CLP2 for dual-electron capture detection (ECD) of chlorinated pesticides and EPA-regulated compounds. Key goals include presenting test procedures, chromatographic benchmarks, and productivity-enhancing tools.
Column performance was evaluated using low-volume solvent test mixes, 5–10 ng trace probes, and a stringent 45 °C test temperature to reveal residual activity. Resolution metrics focused on aromatic isomers and priority pollutants. ECD methods followed EPA protocols under hydrogen-carrier conditions. Instrumentation included:
DB-UI 8270D columns delivered excellent peak shape and minimal bleed for over 78 semi-volatile analytes in a 25-minute run, achieving baseline separation of challenging isomer pairs such as benzo[b]- and benzo[k]-fluoranthene. DB-CLP1/DB-CLP2 columns provided reliable separation for nine EPA methods, covering organohalide pesticides, chlorinated solvents, trihalomethanes, haloacetic acids, PCBs, and phenoxyacid herbicides. Fast GC protocols reduced analysis times without compromising resolution.
These columns offer ready-to-use, method-validated solutions that minimize development time and maintenance downtime. Combined with free method translation software, inert flow-path components, and turnkey analyzer packages, laboratories can streamline workflows and increase sample throughput.
Advances may include enhanced automation of method translation across diverse column geometries, integration of real-time bleed and inertness monitoring, and coupling with novel detectors. Miniaturized and portable GC systems could extend environmental testing to field laboratories and on-site monitoring.
Agilent’s DB-UI 8270D and DB-CLP1/DB-CLP2 columns are rigorously tested to deliver consistent inertness, selectivity, and productivity for regulated environmental analyses, empowering laboratories to achieve reliable trace-level results.
GC columns, Consumables
IndustriesManufacturerAgilent Technologies
Summary
Significance of the Topic
Environmental monitoring requires robust gas chromatography solutions to reliably detect semi-volatile organic compounds and chlorinated analytes at trace levels. High inertness, selectivity, and throughput are essential for regulatory compliance and quality control in environmental laboratories.
Objectives and Scope
This article reviews two new Agilent J&W column families: DB-UI 8270D for semi-volatile GC/MS analysis and DB-CLP1/DB-CLP2 for dual-electron capture detection (ECD) of chlorinated pesticides and EPA-regulated compounds. Key goals include presenting test procedures, chromatographic benchmarks, and productivity-enhancing tools.
Methodology and Used Instrumentation
Column performance was evaluated using low-volume solvent test mixes, 5–10 ng trace probes, and a stringent 45 °C test temperature to reveal residual activity. Resolution metrics focused on aromatic isomers and priority pollutants. ECD methods followed EPA protocols under hydrogen-carrier conditions. Instrumentation included:
- Agilent 7890 GC with 5975C MSD or dual µECD detectors
- Agilent 7693 autosampler with 10 µL syringe
- Ultra Inert liners (single/double taper) and deactivated guard columns
- MMI inlet in non-pulsed splitless mode
- CFT fittings, gas clean filters, and touchless liner packaging
Main Results and Discussion
DB-UI 8270D columns delivered excellent peak shape and minimal bleed for over 78 semi-volatile analytes in a 25-minute run, achieving baseline separation of challenging isomer pairs such as benzo[b]- and benzo[k]-fluoranthene. DB-CLP1/DB-CLP2 columns provided reliable separation for nine EPA methods, covering organohalide pesticides, chlorinated solvents, trihalomethanes, haloacetic acids, PCBs, and phenoxyacid herbicides. Fast GC protocols reduced analysis times without compromising resolution.
Benefits and Practical Applications
These columns offer ready-to-use, method-validated solutions that minimize development time and maintenance downtime. Combined with free method translation software, inert flow-path components, and turnkey analyzer packages, laboratories can streamline workflows and increase sample throughput.
Future Trends and Potential Applications
Advances may include enhanced automation of method translation across diverse column geometries, integration of real-time bleed and inertness monitoring, and coupling with novel detectors. Miniaturized and portable GC systems could extend environmental testing to field laboratories and on-site monitoring.
Conclusion
Agilent’s DB-UI 8270D and DB-CLP1/DB-CLP2 columns are rigorously tested to deliver consistent inertness, selectivity, and productivity for regulated environmental analyses, empowering laboratories to achieve reliable trace-level results.
References
- Application Note 5991-0250EN: Semi-Volatile Analysis with DB-UI 8270D Columns
- Application Note 5990-0207EN: Organohalide Pesticides in Water by GC/µECD
- Application Note 5991-0541EN: Rapid Analysis of CLP Pesticides Using High-Temperature CLP Columns
- Application Note 5991-0615EN: Evaluating CLP and EPA Methods Using DB-CLP1/DB-CLP2 Columns
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