| Glass Vessel Volume | 30 L Cylindrical |
| Glass Vessel Lid Diameter | Φ 265 mm |
| Jacketed Volume | 9000 ml |
| Dropping Funnel | 2000 ml |
| Temperature Range | -80℃ to 250℃ |
| Temperature Measurement Accuracy | +/-1℃ |
| Stirring Speed | 0 to 1400 rpm |
| Vacuum Degree | 0.098 Mpa |
| Power Consumption | 120 W |
| Power Supply | 220V/50Hz |
| Condenser Dimension (D×H) | 100×700 mm |
| Dimensions (W×D×H) | 870×560×2170 mm |
| Weight | 65 kg |
Ergonomic handles for transport
Built-in pressure safety release
Detachable stirring shaft assembly
Durable corrosion-resistant support
Quick-release glass joint system
Jacketed Glass Reactor LJGR-A31 enables controlled synthesis, distillation, and concentration in advanced laboratory setups. This ensures steady process conditions for experiments requiring continuous operation and precise material handling.
Download catalog for
Jacketed Glass Reactor LJGR-A31 Catalog
Available Range :
Jacketed Glass Reactor LJGR-A10 : 1 L Cylindrical Jacketed Glass Reactor LJGR-B21 : 10 L Jacketed Glass Reactor LJGR-A22 : 10 L Cylindrical Jacketed Glass Reactor LJGR-B24 : 100 L Jacketed Glass Reactor LJGR-A26 : 100 L Cylindrical Jacketed Glass Reactor LJGR-B26 : 100L Jacketed Glass Reactor LJGR-A27 : 150 L Cylindrical Jacketed Glass Reactor LJGR-A11 : 2 L Cylindrical Jacketed Glass Reactor LJGR-B22 : 20 L Jacketed Glass Reactor LJGR-A23 : 20 L Cylindrical Jacketed Glass Reactor LJGR-B25 : 200 L Jacketed Glass Reactor LJGR-A28 : 200 L Cylindrical Jacketed Glass Reactor LJGR-A12 : 3 L Cylindrical Jacketed Glass Reactor LJGR-A24 : 30 L Cylindrical Jacketed Glass Reactor LJGR-B20 : 5 L Jacketed Glass Reactor LJGR-A50 : 5 L (Cylindrical) Jacketed Glass Reactor LJGR-A17 : 5 L Cylindrical Jacketed Glass Reactor LJGR-A13 : 5 L, Cylindrical Jacketed Glass Reactor LJGR-B23 : 50 L Jacketed Glass Reactor LJGR-A25 : 50 L CylindricalJacketed Glass Reactor supports controlled mixing with adjustable stirring speed, ensuring consistent reaction dynamics in varied experiments. They maintain thermal stability using a jacketed layer for fluid circulation without exposing the medium. Their borosilicate glass build withstands thermal stress and chemical exposure over time. These systems include a display panel for monitoring key parameters during operation. Our glass reactor is suited for synthesis, distillation, extraction, crystallization, and pharmaceutical development.








Our Jacketed Glass Reactor LJGR-A31 is designed with durable seals and secure fittings that maintain a stable vacuum environment, preventing leaks and pressure drops. The materials used withstand the mechanical stress caused by vacuum conditions without deformation or damage. This design is essential for handling sensitive or volatile substances that require controlled atmospheres. It supports routine processes like distillation, drying, and concentration safely and reliably. The connections are engineered to prevent accidental disconnections, enhancing operational safety. These features provide confidence for extended use under vacuum conditions in both research and industrial applications.
Our Jacketed Glass Reactor LJGR-A31 includes a wide vessel opening and smooth internal surfaces that simplify cleaning after each use, reducing residue buildup. Components can be detached easily without specialized tools, allowing for thorough maintenance and inspection. The materials resist common laboratory cleaning agents, which helps preserve the equipment’s integrity over time. This design reduces downtime between experiments, improving workflow efficiency. It also helps maintain a contamination-free environment, which is critical for experimental accuracy. These aspects contribute to long-term reliability and ease of upkeep in busy laboratories.
The Jacketed Glass Reactor LJGR-A31 offers adjustable stirring speeds that accommodate different material viscosities and reaction requirements. It can provide gentle agitation for delicate mixtures or stronger stirring for thicker substances, ensuring even mixing throughout. This flexibility supports consistent heat distribution and uniform reactant contact. The system is built to remain stable during long runs, reducing wear and operational interruptions. It also accepts various impeller designs to meet specific process needs. These qualities make it well-suited for a wide range of chemical and biochemical applications where control over mixing intensity is important.
Labtron’s Jacketed Glass Reactor LJGR-A31 is designed to balance effective performance with low power use. Its insulated jacket limits heat loss, so less energy is required to maintain desired temperatures during experiments. The stirring motor operates efficiently across different speeds, preventing unnecessary electricity consumption. Additionally, the reactor’s vapor recovery system helps conserve solvents, further lowering resource waste. These features help reduce operating costs and align with environmentally conscious laboratory practices. By minimizing heat generation in the workspace, it also improves comfort for laboratory personnel. This energy-aware design supports sustainable scientific work.
The Jacketed Glass Reactor LJGR-A31 features clear, durable glass that allows continuous visual monitoring of reaction progress. Users can observe color changes, phase shifts, or precipitate formation without opening the vessel, preserving the reaction environment. This visibility enables timely adjustments and better control without the need for sample removal, which could disrupt conditions. The transparent design also supports educational purposes by making internal processes easy to follow. Furthermore, it aids documentation with direct observation during experiments. The glass’s resistance to chemical corrosion ensures it remains intact through repeated use. This clarity enhances operational oversight and safety.
The Jacketed Glass Reactor LJGR-A31 uses a cylindrical vessel shape that promotes uniform heating and efficient mixing, supporting a variety of laboratory processes such as synthesis, distillation, and concentration. Its moderate volume suits both scale-up experiments and routine research without taking up excessive space. The vertical design integrates well with laboratory setups, allowing easy access for adding or removing materials. It also optimizes vapor flow, which is important for effective separation during distillation. These physical characteristics make the reactor adaptable across multiple scientific fields, ensuring broad utility and convenience in everyday use.
Post your question?
Our experts are here to help!
Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom
Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608