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SuperVap®
Precision Dry Evaporation,
Direct to GC Vials

SuperVap-6 ®
SuperVap-12®
SuperVap-24 ®
SuperVap/ PFC12 ®

.

     SuperVap® 

             Dry, Automated, and Ready for GC/MS and LC/MS

   SuperVAP-6 ▼     SuperVap- 12 ▼    SuperVap-24 ▼      SuperVap – PFC-12 ▼ 

SuperVap-6

Precision Dry Evaporation /Concentration, Direct to GC Vials

Brochure   |   Application Notes   |   Video

SuperVap-6

Automated Dry Evaporation to GC Vials

Brochure   |   Application Notes   |   Video

Automated Concentration with SuperVap® 6

Automated Concentration is the core of sample preparation in modern labs—and SuperVap® 6 delivers it with unmatched speed, precision, and reliability. This advanced dry evaporation system is purpose-built for high-throughput laboratories needing consistent, reproducible solvent reduction without water baths. With fully automated operation and direct-to-vial delivery, SuperVap® 6 enhances lab productivity while preserving analyte integrity.


Why Choose SuperVap® 6 for Automated Concentration?

The SuperVap® 6 sets the benchmark in Automated Concentration by combining intelligent engineering, high throughput, and programmable control. Key advantages include:

  • Parallel evaporation for up to six samples, up to 250 mL each

  • Dual modes: time-based or automatic end-point detection

  • Direct-to-vial transfer, eliminating manual handling

  • Compatibility with a broad range of solvents and sample types

  • Precise, hands-free concentration with reproducible results

Whether you’re working on clinical, food, environmental, or pharmaceutical samples, Automated Concentration with SuperVap® 6 ensures speed, safety, and accuracy.


Automated Concentration vs. Water Bath Evaporators

Compared to traditional water bath systems, automated dry evaporation delivers:

  • Low Maintenance: No water bath, no cleaning, no algae—eliminating downtime

  • Higher Sample Integrity: No water vapor or spills to compromise your results

  • Better Safety: No risk of burns or spills from hot water

  • Consistent Heating: Uniform evaporation conditions across all samples

This makes Automated Concentration the preferred choice for precision workflows.


Vortex, Nitrogen, and Heat: The Evaporation Advantage

  • Vortex-assisted nitrogen flow accelerates evaporation by increasing solvent surface exposure

  • Controlled heat and gas flow ensure even, gentle evaporation to protect thermally sensitive compounds

  • Nitrogen prevents oxidation and improves recovery by minimizing analyte degradation

  • Automatic end-point control stops gas and heat at the exact concentration point—reducing human error

These combined features enhance accuracy, reproducibility, and throughput in automated concentration workflows.


Validated for Low-Level Detection (PFAS & Dioxins)

Studies have confirmed that nitrogen blowdown evaporation with heat and vortex is effective for low-level detection. In one test, this approach delivered 99–100% recovery of PFAS analytes—ideal for trace-level environmental analysis.

The same method is widely used in dioxin testing, where regulatory compliance and accuracy are critical. SuperVap® 6 supports these applications by offering dependable and repeatable automated concentration performance.


EPA Method 3550C for Nitrogen Evaporation Compliance

To meet regulatory standards, EPA Method 3550C recommends gentle nitrogen blowdown evaporation to achieve consistent final volumes without analyte loss.

🔗 View EPA Method 3550C


EPA Method 3550C

Key Features:

  • Automated Concentration using dry, waterless technology eliminates water baths, reduces maintenance, and delivers faster, more consistent evaporation results.

    • Dry Evaporation Technology
      Eliminates the need for water baths, reducing maintenance and contamination risks associated with water-based systems.

    • Vortex, Nitrogen, and Heat Synergy
      Combines vortex-assisted gas flow, inert nitrogen, and controlled heat to deliver fast, uniform, and gentle evaporation ideal for low-level detection.
      ​

    • 6-Position Capacity
      Simultaneously processes up to six samples, each up to 250 mL, increasing throughput and efficiency.​

    • Dual Evaporation Modes
      Offers both time-based and automatic endpoint detection modes to accommodate various sample preparation requirements.​

    • Automatic Endpoint Detection
      Utilizes sensors to detect when the desired concentration is achieved, automatically stopping nitrogen flow and heating to prevent over-concentration and preserve analytes.​

    • Direct-to-Vial Delivery
      Automatically transfers concentrated samples directly into GC-compatible vials, eliminating manual handling and reducing the risk of cross-contamination.​

    • High-Speed Evaporation
      Incorporates advanced heating technologies to accelerate evaporation, reducing processing time.​

    • Reproducible Results
      Maintains consistent evaporation conditions across all samples, ensuring high reproducibility and improved sample integrity.​

    • Versatile Compatibility
      Supports a wide range of solvents and sample matrices, making it suitable for diverse applications.​

    • Cost-Effective Operation
      Minimizes solvent usage and labor costs, offering a significant return on investment.​

    • User-Friendly Interface
      Features an intuitive design and programmable operations, allowing for hands-free, unattended evaporation.

      Applications

      • Clinical Research: Concentrating biological samples for diagnostic and therapeutic analysis.​
      • Food and Beverage Testing: Concentrating samples for residue and contaminant analysis.​

      • Environmental Studies: Evaporating solvents from complex matrices like soil and water.​

      • Pharmaceuticals: Preparing active ingredients for potency testing.

      ​

    • Key Features and Benefits:

      • Dry Evaporation Technology
        Eliminates the need for water baths, reducing maintenance and contamination risks associated with water-based systems.​

      • 6-Position Capacity
        Simultaneously processes up to six samples, each up to 250 mL, increasing throughput and efficiency.​

      • Dual Evaporation Modes
        Offers both time-based and automatic endpoint detection modes to accommodate various sample preparation requirements.​

      • Automatic Endpoint Detection
        Utilizes sensors to detect when the desired concentration is achieved, automatically stopping nitrogen flow and heating to prevent over-concentration and preserve analytes.​

      • Direct-to-Vial Delivery
        Automatically transfers concentrated samples directly into GC-compatible vials, eliminating manual handling and reducing the risk of cross-contamination.​

      • High-Speed Evaporation
        Incorporates advanced heating technologies to accelerate evaporation, reducing processing time.​

      • Reproducible Results
        Maintains consistent evaporation conditions across all samples, ensuring high reproducibility and improved sample integrity.​

      • Versatile Compatibility
        Supports a wide range of solvents and sample matrices, making it suitable for diverse applications.​

      • Cost-Effective Operation
        Minimizes solvent usage and labor costs, offering a significant return on investment.​

      • User-Friendly Interface
        Features an intuitive design and programmable operations, allowing for hands-free, unattended evaporation.

        Applications

        • Clinical Research: Concentrating biological samples for diagnostic and therapeutic analysis.

        • Food and Beverage Testing: Concentrating samples for residue and contaminant analysis.​

        • Environmental Studies: Evaporating solvents from complex matrices like soil and water.​

        • Pharmaceuticals: Preparing active ingredients for potency testing.

        ​

SuperVap® 6 – Advanced Dry Evaporation & Concentration System

Accelerate Your Workflow with Precision Dry Evaporation and Direct-to-Vial Delivery

The SuperVap® 6 is a state-of-the-art dry evaporation system engineered for high-throughput laboratories requiring rapid, precise, and reproducible solvent evaporation. Designed to meet the demands of modern analytical workflows, it eliminates manual transfer steps and enhances sample integrity by delivering concentrated extracts directly into GC-compatible vials.

Advantages Over Traditional Water Bath Evaporators

Dry evaporators like the SuperVap® 6 offer several advantages over conventional water bath systems:​

  • Reduced Maintenance: Eliminates the need for water bath maintenance, such as cleaning and deionizing water, and avoids issues like algae growth.​Wang’s Laboratory

  • Enhanced Sample Integrity: Prevents contamination from water vapor or spills, ensuring cleaner sample processing.​

  • Improved Safety: Reduces the risk of burns and other hazards associated with hot water baths.​

  • Consistent Performance: Provides uniform heating and evaporation conditions, leading to more reliable results.​

Why Choose SuperVap® 6?

The SuperVap® 6 redefines solvent evaporation by combining high-throughput capacity, precision control, and automation. Its direct-to-vial delivery and automatic endpoint detection significantly streamline sample preparation, minimizing errors and maximizing laboratory efficiency.​

Whether you are concentrating clinical samples, environmental extracts, or food residues, the SuperVap® 6 provides a reliable, scalable solution for all your evaporation needs.

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About FMS

Fluid Management Systems (FMS) specializes in designing, manufacturing, and marketing state-of-the-art sample preparation systems that are simple, quick, and cost-effective. Our comprehensive solutions encompass extraction, cleanup, and concentration processes, delivering total sample preparation from sample to vial. With a range of high-speed, high-throughput systems, we cater to various budgets and needs, ensuring efficient and reliable sample analysis. ​fms-inc.com

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FLUID MANAGEMENT SYSTEMS, INC. 900 Technology Park Drive BILLERICA, MA 01821 T: +1 (617) 393-2396 F: +1 (617) 393-0194 BY E-MAIL: FOR ALL SALES INQUIRIES: SALES@FMS-INC.COM