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Quick Start Guide to TurboVap P+

Manuals | 2021 | BiotageInstrumentation
Sample Preparation
Industries
Manufacturer
Biotage

Summary

Importance of the Topic


The efficient and controlled removal of solvents is a fundamental step in sample preparation for analytical chemistry workflows. By ensuring complete evaporation with minimal analyte loss, laboratories improve the sensitivity and reliability of trace-level analyses. The TurboVap P+ system addresses these needs by combining temperature control, inert gas flow, and user-friendly operation to standardize solvent evaporation across diverse sample sets.

Objectives and Overview


This quick start guide aims to introduce users to the TurboVap P+ evaporation system, outlining the primary controls, daily operation steps, and best practices to achieve reproducible results with minimal manual intervention.

Methodology and Instrumentation


The TurboVap P+ system integrates a heated water bath with directed inert gas flow to facilitate gentle and uniform solvent evaporation. Core features include:
  • Operating Modes: Manual, timed, and user-defined methods for flexible control.
  • Touchscreen Interface: Settings for gas flow (L/min), bath temperature (°C/°F), sound level, display brightness, and sleep mode.
  • Nozzle Configuration: Selectable nozzle rows and plugs to accommodate full or partial sample racks.
  • Safety and Automation: Lid sensors, exhaust fan operation, automatic wake-up, and calibration access.
Instrumentation Used:
  • TurboVap P+ Evaporation System (Biotage)

Key Results and Discussion


Although focused on operational guidance, key performance aspects include rapid attainment of target bath temperatures, stable gas flow regulation, and effective solvent removal without overheating. The method presets enable repeatable evaporation protocols, while nozzle plugs prevent sample cross-contamination in partially loaded racks.

Practical Benefits and Applications


  • High-throughput solvent evaporation in QA/QC and research laboratories.
  • Reduced analyte degradation by maintaining controlled temperature and inert atmosphere.
  • Customization of evaporation protocols through method definitions for routine analyses.
  • Audible and visual alerts enhance operator confidence and workflow efficiency.

Future Trends and Applications


Integration of evaporation systems with laboratory information management systems (LIMS), remote monitoring options via IoT connectivity, and the incorporation of AI-driven method optimization are expected to further enhance performance and data traceability.

Conclusion


The TurboVap P+ system offers a versatile and user-friendly platform for solvent evaporation tasks. By mastering its control parameters and operational workflow, laboratories can achieve improved throughput, reproducibility, and analytical quality in sample preparation processes.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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