High-throughput Vacuum Parallel Evaporator – ToronVac™ 2000 (Automated)
Vacuum Parallel Evaporator ToronVac™ 2000 is an automated sample concentration system built for labs that need fast, consistent evaporation across many samples at once. It combines precise digital vacuum control with uniform water-bath heating to keep every position in the same evaporation environment.
This approach helps reduce analyte loss risk linked to azeotropy under overly low pressure, while improving repeatability for trace-level workflows in environmental and food testing.
High-throughput Vacuum Parallel Evaporator – ToronVac™ 2000 (Automated) Applications
- Environmental testing (water, soil, SVOC workflows): Concentrate extracts after cleanup so target compounds are ready for GC/MS or LC/MS reporting with consistent end-point control across positions.
- Food safety sample preparation: Speed up evaporation steps used after pesticide or contaminant extraction so labs can process more batches per shift with comparable conditions across samples.
- High-throughput multi-sample concentration: Evaporate up to 16 large-volume samples in parallel (100–200 mL class), reducing bottlenecks compared with one-by-one rotary evaporation.
- Solvent recovery workflows: Recover condensed solvent vapor through the integrated low-temperature condenser, supporting cleaner operation and reduced solvent waste.

High-throughput Vacuum Parallel Evaporator – ToronVac™ 2000 (Automated) Key Features
- Uniform water-bath heating for strong parallelism
- Water bath heat transfer helps keep each position at the same temperature for consistent evaporation behavior across the rack.
- Precise digital vacuum control
- Digital vacuum control supports stable evaporation conditions and helps reduce loss mechanisms tied to excessive vacuum in certain solvent systems.
- High-throughput concentration performance
- Parallel evaporation can cut total time versus single-sample approaches, with an example comparison shown for 16 samples.
- Integrated solvent recovery path
- Low-temperature condensation recovers solvent vapor, and a corrosion-resistant PTFE path is designed for harsh vapor environments.
- Three-sided visibility for easier end-point control
- Transparent bath walls help you visually confirm evaporation status and stop at the intended endpoint to reduce over-concentration loss.
- No nitrogen cylinder required
- Eliminates day-to-day handling of nitrogen cylinders and reduces ongoing nitrogen consumption cost.
- Flexible tube compatibility up to 200 mL concentration volume
- Supports multiple tube formats for different matrices and methods, with stated maximum concentration volume reaching 200 mL.
- Design features to reduce cross-contamination
- Quick-change sealing cover enables fast tube swaps, cover heating helps limit condensation, and the diversion design improves exhaust handling to reduce location-to-location carryover risk.
- Anti-bumping and anti-boiling control strategy
- Circular shaking, water-bath heating, and vacuum control work together to reduce bumping, with real-time vacuum sensing to protect target analytes.
- Touchscreen method programming and storage
- One touchscreen interface sets and saves temperature, vacuum, time, shaking frequency, and gradient evaporation for repeatable runs.
High-throughput Vacuum Parallel Evaporator – ToronVac™ 2000 (Automated) Technical Specifications
| Specification | Details |
|---|---|
| Concentration method | Vacuum negative pressure, water bath heating, and oscillation |
| Sample capacity | 16, 36 |
| Sample vials | 65 mL / 260 mL glass tube with stem; 70 mL / 320 mL glass tube |
| Water bath temperature range | Room temperature to 80°C |
| Oscillation speed range | 0 to 300 rpm |
| Vacuum pump speed range | 20 to 30 L/min |
| Vacuum pump noise | < 60 dB |
| Software interface | 7-inch built-in touch screen |
| Dimension | 67 cm × 44 cm × 34 cm |
| Weight | 57 kg |
| Voltage | 200 to 240 V, 50/60 Hz (110V is also available) |
| Power rate | 2000 W |
| Fume hood / ventilation | Required |
| Storage temperature | 0 to 40°C |
| Storage humidity | 20 to 85% |
| Operating temperature | 10 to 40°C |
| Operating humidity | 20 to 80% |


