Supplies - GERSTEL Olfactory Detection Port ODP and Preparative Fraction Collector PFC
Brochures and specifications | 2015 | GERSTELInstrumentation
Gas chromatography coupled with olfactory and fraction collection detection provides enriched qualitative and preparative capabilities. Assessing odor-active compounds in real time and isolating target analytes with high purity is critical in flavor chemistry, environmental monitoring, and quality control.
This article presents two GERSTEL modules—the Olfactory Detection Port (ODP) and the Preparative Fraction Collector (PFC). The primary goal is to demonstrate how simultaneous olfactory evaluation and automated fraction collection enhance analytical insights and sample preparation efficiency.
The ODP interfaces with a gas chromatograph to split the column effluent between a conventional detector (FID, FPD or MSD) and a heated mixing chamber for human sniffing. A headset with voice recording enables direct annotation of sensory observations. The PFC collects eluting compounds into up to six traps under controlled temperature, enabling high-purity isolates across multiple runs and a supplementary trap for uncollected fractions.
Integration of olfactory detection provides immediate sensory data without compromising chromatographic performance. Automated fraction collection ensures reproducible isolation of target compounds, supporting downstream analyses and subtraction studies. The modular design accommodates diverse GC systems and application requirements.
Advancements may include integration with sensory data analytics, remote sniffing interfaces, and expanded trap chemistries. Coupling with machine learning models could further relate olfactory profiles to chemical structures and improve method automation.
The GERSTEL Olfactory Detection Port and Preparative Fraction Collector modules offer a powerful combination for sensory-guided and preparative gas chromatography. Their flexibility and automation capabilities support robust analytical and preparative workflows across industries.
GC
IndustriesManufacturerGERSTEL
Summary
Significance of the topic
Gas chromatography coupled with olfactory and fraction collection detection provides enriched qualitative and preparative capabilities. Assessing odor-active compounds in real time and isolating target analytes with high purity is critical in flavor chemistry, environmental monitoring, and quality control.
Study objectives and overview
This article presents two GERSTEL modules—the Olfactory Detection Port (ODP) and the Preparative Fraction Collector (PFC). The primary goal is to demonstrate how simultaneous olfactory evaluation and automated fraction collection enhance analytical insights and sample preparation efficiency.
Methodology and instrumentation
The ODP interfaces with a gas chromatograph to split the column effluent between a conventional detector (FID, FPD or MSD) and a heated mixing chamber for human sniffing. A headset with voice recording enables direct annotation of sensory observations. The PFC collects eluting compounds into up to six traps under controlled temperature, enabling high-purity isolates across multiple runs and a supplementary trap for uncollected fractions.
Instrumentation used
- Olfactory Detection Port (ODP 2 and ODP 3) with heated mixing chamber and humidifier options
- Preparative Fraction Collector (PFC) with multi-trap capacity and temperature control
- Various Sulfinert® splitters, GRAPHPACK® connectors and transfer capillaries
- Voice recognition headset for chromatogram annotation
Main results and discussion
Integration of olfactory detection provides immediate sensory data without compromising chromatographic performance. Automated fraction collection ensures reproducible isolation of target compounds, supporting downstream analyses and subtraction studies. The modular design accommodates diverse GC systems and application requirements.
Benefits and practical applications of the method
- Real-time odor detection for flavor and fragrance analysis
- High-purity fraction collection for preparative and research purposes
- Enhanced workflow efficiency through automated trapping and voice-annotated data
- Customizable splitter and trap configurations for varied analytical goals
Future trends and application possibilities
Advancements may include integration with sensory data analytics, remote sniffing interfaces, and expanded trap chemistries. Coupling with machine learning models could further relate olfactory profiles to chemical structures and improve method automation.
Conclusion
The GERSTEL Olfactory Detection Port and Preparative Fraction Collector modules offer a powerful combination for sensory-guided and preparative gas chromatography. Their flexibility and automation capabilities support robust analytical and preparative workflows across industries.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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