Thermo Scientific TriPlus RSH Autosampler for integrated sample preparation
Brochures and specifications | 2018 | Thermo Fisher ScientificInstrumentation
Manual sample preparation for gas chromatography and GC mass spectrometry is labor intensive and prone to error. More than half of analysis time is spent on extraction, cleanup, dilution, derivatization, mixing and heating steps. Up to thirty percent of analytical errors originate in manual handling, compromising data accuracy and precision.
This application note presents the Thermo Scientific TriPlus RSH Autosampler as a solution for integrating automated sample preparation with GC and GC MS analysis. It aims to demonstrate how unattended workflows reduce bottlenecks, increase throughput and improve data quality.
The TriPlus RSH platform uses an Automatic Tool Change system to switch among six tools for liquid injection, headspace, dynamic headspace, and solid phase microextraction. Key automated actions include sequential and calibration dilution, standard addition, batch derivatization, heating, mixing and vortexing. Ready to use PrepCycle scripts and a graphical Sampling Workflow Editor permit drag and drop programming of complex protocols.
The system described couples the TriPlus RSH Autosampler with a Thermo Scientific ISQ 7000 Single Quadrupole GC MS and a Thermo Scientific TRACE 1310 Gas Chromatograph. Auxiliary modules include an agitator incubator, vortex mixer, dilutor module, wash stations, solvent reservoirs and barcode reader for sample tracking.
Automated FAME transesterification achieved a 90 second derivatization per sample with complete separation in 11 minutes. Melamine and cyanuric acid derivatives in dairy were processed according to FDA protocol, demonstrating efficient derivatization, injection and SRM detection of multiple targets with high throughput.
Expansion of modular autosampler tools will support emerging techniques such as on line derivatization and direct liquid injection mass spectrometry. Integration with laboratory information management systems and advanced data analytics will further streamline end to end workflows. Custom PrepCycle development will drive adoption in pharmaceutical, forensic and petrochemical sectors.
The Thermo Scientific TriPlus RSH Autosampler offers a robust, user programmable platform to automate complex sample preparation and GC GC MS injection. By reducing manual interventions it delivers greater efficiency, reliability and analytical performance across diverse applications.
GC
IndustriesManufacturerThermo Fisher Scientific
Summary
Importance of the Topic
Manual sample preparation for gas chromatography and GC mass spectrometry is labor intensive and prone to error. More than half of analysis time is spent on extraction, cleanup, dilution, derivatization, mixing and heating steps. Up to thirty percent of analytical errors originate in manual handling, compromising data accuracy and precision.
Study Objectives and Overview
This application note presents the Thermo Scientific TriPlus RSH Autosampler as a solution for integrating automated sample preparation with GC and GC MS analysis. It aims to demonstrate how unattended workflows reduce bottlenecks, increase throughput and improve data quality.
Methodology and Instrumentation
The TriPlus RSH platform uses an Automatic Tool Change system to switch among six tools for liquid injection, headspace, dynamic headspace, and solid phase microextraction. Key automated actions include sequential and calibration dilution, standard addition, batch derivatization, heating, mixing and vortexing. Ready to use PrepCycle scripts and a graphical Sampling Workflow Editor permit drag and drop programming of complex protocols.
Instrumentation
The system described couples the TriPlus RSH Autosampler with a Thermo Scientific ISQ 7000 Single Quadrupole GC MS and a Thermo Scientific TRACE 1310 Gas Chromatograph. Auxiliary modules include an agitator incubator, vortex mixer, dilutor module, wash stations, solvent reservoirs and barcode reader for sample tracking.
Main Results and Discussion
Automated FAME transesterification achieved a 90 second derivatization per sample with complete separation in 11 minutes. Melamine and cyanuric acid derivatives in dairy were processed according to FDA protocol, demonstrating efficient derivatization, injection and SRM detection of multiple targets with high throughput.
Benefits and Practical Applications
- Increased sample throughput through unattended operation
- Improved repeatability and reduced cross contamination
- Lower cost per sample by minimizing manual steps
- Flexible workflows for food analysis, environmental screening and QA QC
Future Trends and Potential Applications
Expansion of modular autosampler tools will support emerging techniques such as on line derivatization and direct liquid injection mass spectrometry. Integration with laboratory information management systems and advanced data analytics will further streamline end to end workflows. Custom PrepCycle development will drive adoption in pharmaceutical, forensic and petrochemical sectors.
Conclusion
The Thermo Scientific TriPlus RSH Autosampler offers a robust, user programmable platform to automate complex sample preparation and GC GC MS injection. By reducing manual interventions it delivers greater efficiency, reliability and analytical performance across diverse applications.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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