Introduction

Jacketed Glass Reactor features a 1 L cylindrical glass vessel allowing easy access for material addition and setup adjustments. The external condenser supports vapor cooling during reflux operations. It features a fixed external loop buffer that stabilizes liquid circulation while reducing leakage risk. Our Jacketed Glass Reactor is suited for distillation and concentration processes in chemical and academic research.

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 enables controlled chemical reactions like synthesis and distillation with precise temperature management. This makes it ideal for research and industrial applications requiring stable and efficient reaction conditions.

Specifications

Glass Vessel Volume 1 L Cylindrical
Glass Vessel Lid Diameter Φ 150 mm
Jacketed Volume 200 ml
Dropping Funnel 250 ml
Temperature Range -80℃ to 250 ℃
Temperature Measurement Accuracy +/-1℃
Stirring Speed 0 to 450 rpm
Vacuum Degree 0.0098 Mpa
Power Consumption 40 W
Power Supply 220V/50Hz
Condenser Dimension (D×H) 40×350 mm
Dimensions (W×D×H) 330×350×1220 mm
Weight 17.5 kg

Features

Adjustable stirring speed control

Wide temperature compatibility range

Corrosion-resistant support frame

Transparent reaction chamber walls

Quiet magnetic drive system

FAQs

1. Can the Jacketed Glass Reactor be used for reactions involving volatile solvents?

Jacketed Glass Reactor includes a dedicated external condenser that is highly effective for handling volatile vapors during reflux or distillation procedures. The vapor condenses quickly without causing system backpressure. This setup supports reactions involving easily evaporating substances. The system maintains low vapor loss even over extended operations. Its material compatibility ensures structural integrity during such use. Glass visibility helps monitor the process safely. The robust sealing components further prevent leakage during sensitive operations. It offers confident operation even under challenging chemical environments.

2. Does the Jacketed Glass Reactor allow for material addition during operation?

The Jacketed Glass Reactor is designed with a wide-diameter top lid, which permits material additions without interrupting ongoing processes. The layout allows convenient access for tools or droppers while maintaining system conditions. This makes stepwise or timed ingredient additions practical during synthesis workflows. The lid's configuration accommodates multiple ports for various functions. Each port is reinforced to handle closed-system setups. The user can carry out gas purging or sample extraction without dismantling the system. This design benefits long-running or multi-stage chemical reactions. Its multi-port architecture is suited to complex protocols.

3. How does the Jacketed Glass Reactor reduce operational noise?

It integrates a magnetic drive system within the Jacketed Glass Reactor to significantly lower sound levels during reaction stirring. This technology avoids the friction-based components of traditional motor assemblies. It enables sustained operation without adding mechanical vibrations. The system benefits laboratories requiring a quieter workspace, especially during long synthesis cycles. This drive mechanism improves equipment longevity by reducing wear. Its quiet function complements environments with noise-sensitive instruments. Smooth stirring is maintained even at varying speeds. Operators can comfortably run it alongside other sensitive setups.

4. Is the Jacketed Glass Reactor suitable for hazardous chemical reactions?

Jacketed Glass Reactor uses corrosion-resistant materials, including high-grade support frames and fluoropolymer seals, to ensure chemical compatibility. It withstands exposure to reactive substances during extended procedures. The transparent reactor body helps identify changes in reaction color or clarity, aiding safe monitoring. The double-layer structure isolates internal contents from external handling. Secure fittings across the ports prevent accidental leaks. It also accommodates sensors to observe pressure or chemical conditions. This construction allows it to be safely used with a variety of chemical families. Laboratory personnel can confidently engage in reactive synthesis.

5. How does the temperature fluid circulation work in the Jacketed Glass Reactor?

The Jacketed Glass Reactor features a double-wall vessel where temperature-controlled liquid circulates through the outer jacket. This structure ensures that the internal reaction chamber is surrounded evenly by the thermal medium. It eliminates local hot or cold spots during temperature-dependent reactions. The circulation ports are positioned to encourage full fluid contact with the vessel wall. Its construction enables heating or cooling transitions without delay. The setup integrates smoothly with most bath or chiller systems. The jacket operates independently from the inner contents. This separation supports stable thermal management during complex experiments.

6. Can the Jacketed Glass Reactor accommodate automated or continuous-flow processes?

The Jacketed Glass Reactor supports connection with external feeding systems or collection tanks, making it compatible with flow chemistry or multi-stage synthesis setups. Its port arrangement allows real-time input and output adjustments. Liquid handling systems can be attached to its lid or base ports. Flow regulation can be maintained via connected pumps. This setup allows controlled reagent delivery during prolonged operations. The system remains closed while enabling circulation. Researchers conducting pilot or automated testing can adapt it without structural modification. This flexibility supports advanced experimental designs.

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