Introduction
Electric features a 20 operations. Its high-strength glass body resists heat and chemicals, ensuring long-term use. Smooth rotation control supports efficient evaporation throughout processing. Our Electric Lifting Rotary Evaporator performs gentle solvent evaporation, concentrates chemical mixtures, recovers valuable solvents, and supports controlled crystallization processes.
This equipment is essential for solvent evaporation and concentration processes in chemical, pharmaceutical, and food laboratories. It features efficient heat transfer and vacuum control to ensure optimal distillation results while protecting sensitive samples.Applications
Electric Lifting Rotary Evaporator enables solvent evaporation, concentration, and crystallization under controlled vacuum conditions. It is used in pharmaceutical labs, chemical industries, aerospace research, and academic institutions.
Specifications
| Evaporating Flask | 20 L |
| Receiving Bottle | 10 L |
| Rotation Speed | 0 to 120 rpm |
| Lifting Distance | 180 mm |
| Lifting Mode | Electric |
| Temperature Range | RT to 180°C |
| Temperature Control Accuracy | +/- 1°C |
| Vacuum Degree | 0.098 Mpa |
| Rotating Motor Power | 120 W |
| Heating Power | 5000 W |
| Bath Capacity | 41 L |
| Power Consumption | 5120 W |
| Power Supply | 220 to 240 V/5O Hz |
| Dimensions (L×W×H) | 1000×600×2130 mm |
| Weight | 88.5 Kg |
Features
Enhanced chemical resistance build
Compact structure for labs
Consistent evaporation process support
Automated lift system
Long-lasting operational stability
FAQs
1. How does the Electric Lifting Rotary Evaporator simplify multi-step workflows in laboratory settings?
Electric Lifting Rotary Evaporator integrates operations by allowing uninterrupted transitions between evaporation, cooling, and collection stages. This reduces the need to move samples between multiple setups. Independent controls for temperature and lift functions permit simultaneous adjustments without cross-interference. Programmable settings allow for quick repetition of previous runs, helping streamline processes. Glassware fittings are designed for quick detachment, cutting down time between batches. The vapor path layout minimizes transfer losses while supporting continuous collection. Its layout complements sequential tasks by reducing workspace congestion. The entire unit is structured to promote uninterrupted procedural continuity.
2. What structural advantages are built into the Electric Lifting Rotary Evaporator for long-term usage?
Electric Lifting Rotary Evaporator features an industrial-grade chassis engineered for steady performance under repeated use. Its support frame is fortified to prevent wobbling during extended operation cycles. The lift rail is reinforced to resist mechanical wear, keeping vertical motion smooth over time. Anti-corrosion finishing ensures that chemical splashes do not weaken the frame integrity. All contact points are reinforced with long-lasting seals to prevent degradation. The overall geometry allows optimal load distribution, reducing mechanical stress. Fasteners are treated for resistance to repeated thermal exposure. These long-wear features reduce the need for constant servicing.
3. How does the Electric Lifting Rotary Evaporator improve thermal regulation for high-volume samples?
Electric Lifting Rotary Evaporator provides layered thermal feedback through real-time sensors embedded in the heating bath. This constant monitoring ensures consistent warmth across the full flask surface. Larger volumes benefit from even heat diffusion, reducing localized overheating. A deep-set bath accommodates flask immersion without spill risk, maintaining equilibrium. The system reacts quickly to minor fluctuations to avoid temperature instability. Efficient insulation keeps external heat loss low, optimizing energy use. Temperature spread is consistent, even during long batch durations. This makes it ideal for maintaining uniform thermal profiles across larger samples.
4. How is material compatibility addressed in the Electric Lifting Rotary Evaporator’s construction?
Electric Lifting Rotary Evaporator uses material-matched components to reduce interaction risks with a wide range of solvents. The glassware is made of high-grade borosilicate, known for inertness and thermal endurance. Sealing areas incorporate a blend of and fluoro rubber for strong chemical resistance. All tubing and joints are selected based on tolerance to both organic and aqueous compounds. Contact points do not corrode under reactive vapors or harsh acids. Compatibility charts guide the use of materials based on solvent type. No metal surfaces are exposed in solvent pathways. This ensures contamination-free recovery and long service life.
5. What specific role does the Electric Lifting Rotary Evaporator play in low-boiling compound recovery?
Electric Lifting Rotary Evaporator is tailored for recovering solvents with low boiling points by creating reduced-pressure environments that promote early evaporation. This avoids exposure to high heat, safeguarding delicate compounds from structural damage. The rotary motion ensures surface expansion without excess agitation. The chilled condenser rapidly traps rising vapors to prevent atmospheric release. Tight seals maintain a stable vacuum, enhancing efficiency. The setup allows rapid cycling without decomposing temperature-sensitive contents. Cooling lines are reinforced to prevent clogging or condensation blockages. These capabilities make it well-suited for low-boiling-point solvent work
6. How does the Electric Lifting Rotary Evaporator assist in reducing contamination risks during sample processing?
The Electric Lifting Rotary Evaporator limits cross-contact by isolating active zones with dedicated glassware and individual connectors. Samples remain enclosed throughout evaporation, reducing air exposure and particulate intrusion. Drip-free discharge valves avoid residual pooling that could compromise purity. The internal path is direct and short, minimizing exposure points. Cleaning areas are accessible without dismantling key components. Overflow protection avoids backflow into the evaporating flask. Tight assembly fittings prevent loose seals that could allow ingress. Together, these elements reduce contamination risk during sensitive laboratory procedures.
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