Introduction
Jacketed Glass Reactor features a 2 synthesis and controlled chemical processing. The multi-port lid arrangement accommodates diverse experimental setups without limiting operational access. Its anti-tilt base supports long experimental runs by reducing movement during stirring. Our reactor is ideal for compound synthesis, reaction optimization, and educational use in research and industrial labs.
This laboratory glass reactor is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Jacketed Glass Reactor facilitates controlled chemical synthesis and reaction processes with precise temperature regulation. This makes it ideal for research in pharmaceuticals, chemical engineering, and material science.
Specifications
| Glass Vessel Volume | 2 L Cylindrical |
| Dropping Funnel Volume | 200 ml |
| Dropping Funnel Interface | 24/29 |
| Glass Vessel Flange | Φ 105 mm |
| Glass Vessel Opening OD | Φ 150 mm |
| Glass Material | 3.3 Borosilicate |
| Support Parts of Stirrer | , and Glass |
| Bottom Valve ID | Φ 10mm |
| Jacket interface | 25 mm |
| Jacket Interface Pressure Limit | Less than or equal to 0.03 Mpa |
| Circulation Hose Connection Port | Rc1/2 and Rc3/4 |
| Glass Vessel Lid Openings | 5 |
| Center Opening of Lid | 24/40 |
| Side Opening of Lid | 24/40×3, 19/26 |
| Seal Ring on Vessel Lid | Φ148×Φ105×3 |
| Drain Port Ground Clearence | 100 mm |
| Stirring Speed | 40 to 500 rpm |
| Condenser Interface | 24/29 |
| Condenser Area | 0.025 m |
| Receiving Bottle | Optional |
| Power Consumption | 50 W |
| Dimensions (W×D×H) | 480×420×1100 mm |
Features
Flexible circulation hose connections
Temperature-resistant sealing materials
Quick-disconnect electrical components
Optimized fluid circulation paths
Integrated drip containment system
FAQs
1. Can Jacketed Glass Reactor operate safely with various pipe connections?
The Jacketed Glass Reactor is built with flexible circulation hose ports to accommodate a range of pipe fittings without stress on the glass. design minimizes strain during thermal expansion or realignment of external systems. The hose connectors offer stability while maintaining tight seals even during extended operations. reactor ensures consistent flow of heating or cooling media without disturbing the setup. It reduces the risk of leaks and accidental dislodgement of hoses during process transitions. reactor’s adaptability makes it ideal for dynamic lab layouts with modular pipe routing. It’s especially beneficial when external devices are frequently attached or removed. This reactor supports advanced fluid routing without compromising on durability or connectivity.
2. How does Jacketed Glass Reactor manage unexpected liquid spills?
Jacketed Glass Reactor includes an optional receiving tray positioned beneath the vessel to catch unintentional drips during draining or transfer. This addition helps labs avoid surface contamination and protects sensitive flooring materials. It also simplifies cleanup by collecting residues at a single point. reactor design accounts for frequent operational interruptions, where liquids may remain in the outlet path. It helps avoid loss of samples or reactive compounds that need to be preserved. unit supports responsible lab practices by minimizing chemical exposure during drainage. It is especially useful in tight spaces where floor spillage could interfere with nearby equipment. The reactor emphasizes both user safety and lab hygiene through passive containment.
3. Why are multiple lid openings useful in Jacketed Glass Reactor ?
The Jacketed Glass Reactor incorporates a multi-opening glass lid that allows simultaneous use of condensers, funnels, and sensors. This configuration is ideal for complex experiments requiring continuous monitoring or reagent dosing. The reactor permits gas purging, sampling, and refluxing within one setup. glass lid design streamlines workflows by reducing the need to dismantle equipment between steps. It also allows uninterrupted reactions where atmospheric isolation is needed. The ability to install various tools simultaneously boosts productivity in iterative processes. reactor supports a compact setup for multi-phase reactions. This lid system accommodates evolving research protocols that need greater access flexibility.
4. Is the Jacketed Glass Reactor suitable for reactions under vacuum?
Jacketed Glass Reactor supports vacuum conditions by integrating secure sealing components throughout the vessel and lid system. Its structural design maintains system integrity even during prolonged vacuum applications. The use of heat-resistant sealing rings ensures stability during pressure changes. The reactor’s vacuum compatibility makes it ideal for sensitive synthesis requiring reduced pressure. It allows for solvent evaporation without exposure to ambient moisture. build ensures that vacuum cycles do not disrupt attached instruments. This makes the unit highly efficient for processes like rotary evaporation and degassing. The system is engineered to maintain integrity without compromising experimental flow.
5. Can the stirrer shaft in Jacketed Glass Reactor be adjusted during operation?
The Jacketed Glass Reactor includes a shaft design that allows for stirrer depth adjustment, offering flexibility for varying reaction volumes. This is beneficial for avoiding contact with solid residues or fragile materials during mixing. The shaft can be repositioned without dismantling the vessel components. It allows mixing efficiency to be optimized based on liquid level. users can switch between top-layer blending and deep-vessel agitation without equipment change. This versatility supports wide-ranging applications from suspension reactions to solvent-based processes. stirrer design prevents unnecessary shearing of delicate samples. It’s particularly valuable in multi-stage synthesis where viscosity and volume vary.
6. What makes the support system of Jacketed Glass Reactor stable for prolonged use?
Jacketed Glass Reactor features a support structure designed to resist tipping and operational vibrations, even during prolonged stirring. Its anti-slip base reduces micro-movements on benchtop surfaces. The reactor frame is reinforced to manage shifting loads during high-speed mixing. unit is built to sustain heavy glassware without external reinforcement. The robust lower assembly anchors the vessel in place without restricting visibility or access. stable base is ideal for experiments requiring long reaction times under heat or vacuum. The design allows vibration absorption without transferring stress to the vessel. This ensures both user safety and equipment protection during repetitive use.
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