Short Path Distillation Systems | Lab-scale purification of heat-sensitive compounds (e.g., pharmaceuticals, essential oils) | Flask Capacity: 3L (Industry) ▲5L (Our Base) ▲6L (Our Advanced) Temperature Stability: ±1°C (Industry) ▲±0.5°C (Base) ▲±0.3°C (Advanced) Vacuum Level: -0.09 MPa (Industry) ▲-0.095 MPa (Base) ▲-0.098 MPa (Advanced) (Supports near-vacuum conditions for minimal thermal degradation) | Enables low-temperature distillation to preserve sensitive materials Compact design for lab spaces | Higher cost vs rotary evaporators Requires skilled operation (training recommended) |
Rotary Evaporators | Routine solvent recovery in chemistry labs (e.g., organic synthesis) | Flask Capacity: 5L (Industry) ▲10L (Our Advanced) Vacuum Level: -0.09 MPa (Industry) ▲-0.095 MPa (Advanced) Heating Bath Temp: Up to 150°C (Industry) ▲200°C (Advanced) (Handles higher boiling solvents) | Cost-effective for high-volume solvent recovery Easy to use (automated controls) | Less efficient for temperature-sensitive materials Large footprint (requires bench space) |
Kugelrohr Distillation Systems | High-vacuum distillation of high-boiling materials (e.g., polymers, waxes) | Vacuum: -0.1 MPa (Industry) ▲-0.1 MPa (Base) (same) Temperature: Up to 400°C (Industry) ▲450°C (Advanced) Automation: Manual (Industry) ▲Semi-Auto (Advanced) (Reduces operator error) | Handles high-boiling compounds effectively (up to 450°C) Minimal sample loss | Slow process (hours/days) Requires significant expertise (operator training) |
Vacuum Distillation Units | General lab-scale distillation (e.g., solvent purification) | Flask Capacity: 2L (Industry) ▲5L (Our Base) Vacuum Level: -0.08 MPa (Industry) ▲-0.09 MPa (Base) (Improved vacuum for faster evaporation) | Versatile for various distillation needs Lower cost than specialized systems | Limited temperature and vacuum control precision (±2°C stability) |
Falling Film Evaporators | Industrial continuous processing (e.g., food, chemical industries) | Capacity: 1000L/h (Industry) ▲1200L/h (Advanced) Energy Efficiency: 85% (Industry) ▲92% (Advanced) (Reduces operational costs) | High throughput and energy efficiency Scalable for large batches | Not suitable for small-scale labs High maintenance requirements (requires frequent cleaning) |
Custom Modular Systems | Tailored lab setups requiring flexibility (e.g., multi-step processes) | Modular Design: Basic components (Industry) ▲Customizable modules (Advanced) Integration: Limited compatibility (Industry) ▲Full compatibility (Advanced) (Supports third-party instruments) | Adaptable to specific lab needs Scalable configurations (add/remove modules) | Higher cost and complexity (requires engineering support) |