Introduction

It is the supplier of Single with stirring speed up to 280 rpm for uniform mixing. The vacuum degree reaches 0.0098 Mpa enabling effective evaporation performance.

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

Single Layer Glass Reactor facilitates large-scale chemical reactions through controlled heating, stirring, and vacuum-assisted evaporation. This allows efficient synthesis, solvent distillation, and purification processes in research, pharmaceutical, and industrial laboratories.

Specifications

Glass Vessel Volume 200 L Cylindrical
Receiving Bottle 10 L
Temperature Range -80 to 250 ℃
Bath Temperature RT to 180 ℃
Temperature Measurement Accuracy +/-1℃
Heating Power 21000 W
Stirring Speed 0 to 280 rpm
Vacuum Degree 0.0098 Mpa
Dropping Funnel 5000 ml
Power Consumption 750 W
Power Supply Stirrer 220V/50Hz
Power Supply Heating Bath 380V/50 Hz
Dimensions (W×D×H) 880×800×1850 mm
Weight 178 kg

Features

Digital stirring speed display

Heavy-duty support structure

Adjustable reflux condenser option

Integrated overheat protection system

Quick-release vessel clamps

FAQs

1. Can the Single Layer Glass Reactor handle long-duration synthesis reactions without performance issues?

Single Layer Glass Reactor is designed to support extended reaction times by maintaining consistent agitation and temperature control throughout the process. The structure allows users to maintain uniform mixing without overheating or loss of material stability. Its drive system runs quietly even during prolonged operation, reducing strain on lab environments. Heat distribution across the vessel remains steady without localized hotspots. This ensures even thermal exposure during time-sensitive reactions. Chemical compounds with longer processing windows benefit from this uninterrupted operation. Materials remain isolated from reactive metal surfaces to avoid contamination risks. The Single Layer Glass Reactor maintains performance integrity even during multi-stage synthesis procedures.

2. Can the Single Layer Glass Reactor be adapted for solid-liquid extraction processes?

The Single Layer Glass Reactor is not limited to liquid-phase reactions—it can also support solid-liquid interactions. Its continuous stirring function helps keep suspended materials moving, ensuring contact with solvents. The system allows introduction of solid samples without interrupting flow through its top access design. Settling issues are minimized due to the vessel’s geometry and uniform agitation. components reduce surface adherence of solid particles. Visual monitoring is made easier by the transparent vessel walls. Extraction efficiency is enhanced through controlled solvent exposure at elevated temperatures. The Single Layer Glass Reactor adapts well to labs performing botanical or pharmaceutical extractions.

3. Does the Single Layer Glass Reactor allow scale-up experimentation for production environments?

Single Layer Glass Reactor serves as a bridge between benchtop research and pilot-scale production. The reactor's generous capacity enables users to trial larger batch processes while still maintaining laboratory control. This reduces the need to reoptimize methods during industrial scale-up. Configurable accessories such as temperature probes and distillation heads mirror production setups. Operating conditions can be monitored closely to simulate real-world challenges. The reactor’s frame and fittings withstand repeated use under production-like conditions. Materials of construction are compatible with a range of manufacturing solvents. The Single Layer Glass Reactor is ideal for teams transitioning from small-scale trials to process validation.

4. How does the Single Layer Glass Reactor ensure operator safety during exothermic reactions?

It has equipped the Single Layer Glass Reactor with multiple safety-focused design elements to support lab personnel during high-risk operations. Its enclosed control box reduces spark hazards and shields circuitry from volatile vapors. The entire frame rests on a reinforced support base that stabilizes the reactor against motion or tipping. The system’s thermal shielding minimizes external surface heating to prevent burns. Emergency shutoff components are placed within convenient reach of the operator. Materials used in the sealing areas resist degradation under reactive chemical exposure. The reactor’s structure contains potential overflows in case of sudden foam or pressure build-up. The Single Layer Glass Reactor is built for a secure user experience during reactive workloads.

5. How portable is the Single Layer Glass Reactor for use across multiple lab stations?

The Single Layer Glass Reactor is built on a mobile platform fitted with lockable castor wheels, allowing movement without disassembly. Its frame is designed to absorb vibration, ensuring stability even while relocated. The electrical interfaces use quick-connect systems for simplified repositioning. Components like the funnel or condenser can remain attached during transport. The footprint is optimized for lab bench compatibility without compromising functionality. Users can quickly relocate the system between fume hoods, workstations, or temperature-controlled rooms. Its durable framework supports safe mobility without the risk of leaks. The Single Layer Glass Reactor adds flexibility to dynamic lab setups.

6. Is the Single Layer Glass Reactor suitable for multi-phase reactions involving gas inputs?

The Single Layer Glass Reactor is compatible with workflows involving gas-phase reactants when properly configured. It allows controlled bubbling through the liquid via additional ports in the reactor lid. Gas inputs can be safely introduced through -lined connections to avoid backflow. Continuous stirring ensures thorough gas-liquid interaction throughout the reaction period. Gas dispersion is enhanced by the reactor’s depth-to-diameter ratio. The lid can accommodate gas flow meters or in-line traps as needed. High chemical compatibility prevents corrosion from reactive gas types. The Single Layer Glass Reactor provides an adaptable setup for laboratories exploring heterogeneous reaction systems.

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