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DEXTech Method Optimisation

Technical notes | 2019 | LCTechInstrumentation
Sample Preparation
Industries
Environmental, Food & Agriculture
Manufacturer
LCTech

Summary

Importance of the Topic


Dioxin and polychlorinated biphenyl analysis requires rigorous cleanup to achieve reliable quantification in complex matrices. Accelerating sample preparation while reducing solvent use aligns with regulatory demands and sustainability goals.

Objectives and Study Overview


This document presents optimized DEXTech methods for automated fractionation of dioxins and PCBs. Key aims include shortening process times to 60 minutes for standard and 50 minutes for SMART columns, cutting solvent consumption to 400 mL or 300 mL, and introducing column reuse strategies to lower operational costs.

Methodology and Instrumentation


Sample cleanup is performed on the DEXTech platform using carbon columns C1–C4 in two configurations: standard and SMART. The protocol comprises six conditioning steps with toluene and dichloromethane/n-hexane, followed by four fractionation phases collecting non-dioxin-like PCBs, mono-ortho PCBs, non-ortho PCBs, and PCDD/Fs. Solvent flow rates are typically 7 mL/min with a reduced 1 mL/min step for fraction 3. An optional nitrogen flush is available for post-run drying.

Instrumentation Used


  • DEXTech automated sample preparation system (LCTech GmbH)
  • Carbon chromatography columns C1–C4 (standard and SMART)
  • Solvent delivery modules for n-hexane, dichloromethane/n-hexane mixture, and toluene
  • Nitrogen blow-down module (optional)

Main Results and Discussion


Implementation of the optimized standard column method achieved a 60-minute runtime with 400 mL solvent use, while the SMART column variant completed in 50 minutes using 300 mL. Reusing the carbon columns for up to 20 cycles delivered up to 30% cost savings without compromising sensitivity or causing cross-contamination. Detailed solvent volumes and fraction distributions confirm comparable performance to established workflows with enhanced efficiency.

Benefits and Practical Applications


  • Significant reduction in analysis time and solvent consumption
  • Lower operational costs through column reuse
  • Maintained method sensitivity and cleanliness for regulatory compliance
  • Adaptable to various matrices with tailored column choices

Future Trends and Opportunities


As regulatory requirements tighten and green chemistry principles gain prominence, further automation and miniaturization are expected. Integration with advanced detection systems and remote monitoring, as well as exploration of alternative sorbents, may drive next-generation sample prep solutions.

Conclusion


The optimized DEXTech methods deliver rapid, resource-efficient cleanup for dioxin and PCB analysis, balancing throughput and sustainability. Column reuse strategies enhance cost-effectiveness without affecting analytical performance.

References


No references provided in the source document.

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