Graham Condenser 1215
1215
Graham condensers support efficient vapor cooling in laboratory distillation systems. The spiral inner tube design increases heat transfer surface area, which improves condensation performance during chemical experiments.
-
Spiral tube structure increases condensation efficiency
-
Ground-glass joints ensure secure laboratory connections
-
Compatible with standard laboratory distillation equipment
Rich Categories
Comfortable Use
Safety & Accessibility
Durable Build
Details
Details
The Graham condenser provides efficient vapor cooling through a spiral inner tube design. This structure increases the surface area available for heat transfer during distillation.
During laboratory operation, vapor flows through the coiled inner tube while cooling water circulates through the surrounding outer jacket. The spiral pathway increases contact between vapor and the cooled glass surface. As a result, the condenser removes heat efficiently and converts vapor into liquid.
-
Coiled inner tube increases condensation surface area
-
Outer water jacket allows continuous cooling circulation
-
Designed for efficient vapor condensation during distillation
-
24/29 standard taper ground-glass joints for secure connections
-
Compatible with round-bottom flasks and other laboratory glassware
-
Suitable for various chemical distillation procedures
-
Supports laboratory heating using open flame sources
-
Durable glass construction withstands thermal variations
-
Designed for use with standard laboratory support stands
Laboratories often use Graham condensers in distillation systems that require enhanced cooling performance. The spiral inner tube design supports effective condensation even when vapor flow remains continuous.
The standard ground-glass joints simplify equipment assembly. Technicians can connect the condenser to other laboratory glassware without additional sealing components.
In addition, the glass material tolerates typical heating and cooling cycles used in chemistry laboratories. This allows the condenser to operate reliably during repeated experimental procedures.
Applications
Applications
-
Laboratory chemical distillation
-
Organic synthesis vapor condensation
-
Chemical purification processes
-
Educational laboratory distillation experiments
-
Research laboratory heating and cooling systems
Specification
Specification
| Length of jacket (mm) | O.D. of, upper tube (mm) | Cooling area (dm²) | Length (mm) |
| 200 | 18 | 2.3 | 350 |
| 250 | 20 | 2.7 | 420 |
| 300 | 20 | 3.3 | 480 |
| 400 | 22 | 4.7 | 590 |
| 500 | 24 | 7.0 | 710 |
| 600 | 24 | 9.2 | 810 |