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Jacketed Glass Reactor LJGR-B10

Jacketed Glass Reactor LJGR-B10

Jacketed Glass Reactor LJGR-B10 includes a 10 L cylindrical vessel designed for laboratory-scale reactions requiring controlled thermal conditions. The solid charging port allows bulk material addition without disrupting the process. Its optional collection tray reduces spillage during draining for cleaner batch changes. Our reactor supports synthesis, distillation, and material processing in chemical, pharmaceutical, and academic laboratories.

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Glass Vessel Volume 10 L Cylindrical
Dropping Funnel Volume 1000 ml
Dropping Funnel Interface 40/38
Glass Vessel Flange Φ 215 mm
Glass Vessel Opening OD Φ 265 mm
Glass Material 3.3 Borosilicate
Support Parts of Stirrer PTFE, PEED and Glass
Bottom Valve ID Φ 21 mm
Jacket interface 35 mm
Jacket Interface Pressure Limit Less than or equal to 0.03 Mpa
Circulation Hose Connection Port Rc3/4
Glass Vessel Lid Openings 6
Center Opening of Lid 50 mm
Side Opening of Lid S51, S51,35mm, 40/38, 34/35
Seal Ring on Vessel Lid Φ264×Φ220×3
Drain Port Ground Clearence 330 mm
Stirring Speed 50 to 500 rpm
Support Parts for Stirrer PTFE
Condenser Interface 40/38
Condenser Area 0.234 m2
Solid Charging Port 80 mm
Liquid Collection Tray Optional
Receiving Bottle Optional
Power Consumption 90 W
Dimensions (W×D×H) 825×665×1780 mm
  • Lockable rolling base stand
  • Sturdy anti-tilt structure
  • Quick release drain valve
  • Vibration-dampened stirring motor
  • Dual-scale visibility markings

Jacketed Glass Reactor LJGR-B10 facilitates controlled chemical reactions under regulated temperature and stirring. This setup supports crystallization, solvent recovery, and compound synthesis where stable thermal conditions are needed.

Models of Jacketed Glass Reactor

Jacketed 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.

Jacketed Glass Reactor LJGR-A46

Jacketed Glass Reactor LJGR-A46

  • Glass Vessel Volume : 1 L Cylindrical
  • Dropping Funnel Volume : 200 ml
  • Dropping Funnel Interface : 24/29
  • Glass Vessel Flange : Φ 105 mm
Jacketed Glass Reactor LJGR-A43

Jacketed Glass Reactor LJGR-A43

  • Glass Vessel Volume : 20 L Cylindrical
  • Glass Vessel Lid Diameter : Φ 265 mm
  • Jacketed Volume : 7000 ml
  • Dropping Funnel : 1000 ml
Jacketed Glass Reactor LJGR-A50

Jacketed Glass Reactor LJGR-A50

  • Glass Vessel Volume : 5 L (Cylindrical)
  • Jacket Volume : 1.5 L
  • Glass Vessel Flange : Φ 170 mm
  • Glass Vessel Opening OD : Φ 215 mm
Jacketed Glass Reactor LJGR-A34
Jacketed Glass Reactor LJGR-A34
  • Glass Vessel Volume : 150 L Cylindrical
  • Receiving Bottle : 10 L
  • Glass Vessel Lid Diameter : Φ 340 mm
  • Jacketed Volume : 35000 ml
Jacketed Glass Reactor LJGR-A25
Jacketed Glass Reactor LJGR-A25
  • Glass Vessel Volume : 50 L Cylindrical
  • Glass Vessel Lid Diameter : Φ 265 mm
  • Jacketed Volume : 16000 ml
  • Dropping Funnel : 2000 ml
Jacketed Glass Reactor LJGR-B26

Jacketed Glass Reactor LJGR-B26

  • Glass Vessel volume : 100L
  • Receiving Bottle : 20000ml
  • Glass Vessel Flange : Φ285mm
  • OD of Glass vessel opening : Φ338mm
Jacketed Glass Reactor LJGR-A16

Jacketed Glass Reactor LJGR-A16

  • Glass Vessel Volume : 3 L Cylindrical
  • Glass Vessel Lid Diameter : Φ 205 mm
  • Jacketed Volume : 600 ml
  • Dropping Funnel : 500 ml
Jacketed Glass Reactor LJGR-A15

Jacketed Glass Reactor LJGR-A15

  • Glass Vessel Volume : 2 L Cylindrical
  • Glass Vessel Lid Diameter : Φ 150 mm
  • Jacketed Volume : 250 ml
  • Dropping Funnel : 250 ml
Jacketed Glass Reactor LJGR-B10 FAQ's
  • Our Jacketed Glass Reactor LJGR-B10 is engineered with glass and PTFE contact surfaces, both of which offer high compatibility with reactive or aggressive chemical systems. These materials prevent corrosion or degradation when exposed to halides, acids, or other unstable agents used in synthetic reactions. By maintaining chemical neutrality, the internal surfaces prevent cross-reactions or trace interference with sensitive compounds. The reactor maintains long-term durability even under extended exposure to reactive solvents. This material stability is critical for repeat-use workflows where purity and consistency must be preserved. The structure helps maintain product quality across challenging synthesis routes. Its resilience under harsh reagent conditions also reduces maintenance frequency. The system is well-suited for laboratories dealing with toxic, acidic, or base-intensive operations.

  • The Jacketed Glass Reactor LJGR-B10 is compatible with inert atmosphere techniques due to its well-sealed ports and gas-purging compatibility. It supports both static and continuous flow of inert gases such as nitrogen or argon for sensitive reactions requiring isolation from air or moisture. Its lid accommodates tight tubing connections that maintain the internal atmosphere throughout the entire process. This allows researchers to conduct reactions involving pyrophoric compounds or moisture-sensitive reagents with confidence. The gas environment remains stable during long runs, minimizing oxygen ingress that could compromise the reaction. This setup also helps in achieving high product purity by excluding ambient interference. The design allows full environmental control inside the vessel. It’s a preferred choice for glovebox-free inert condition handling in synthetic chemistry labs.

  • The Jacketed Glass Reactor LJGR-B10 provides full visual access to all reaction stages, making it highly effective for student demonstrations and academic training sessions. Learners can observe reaction progression, mixing behavior, and phase changes directly through the transparent glass body. This clarity aids in teaching fundamental concepts like reflux, separation, or vacuum evaporation. Its multiple access points allow safe incorporation of thermometers, sampling tubes, and other training instruments. Instructors can demonstrate multi-component assemblies using real equipment instead of diagrams or simulations. This reactor serves as a working model of scaled-down industrial processes. Its structure encourages hands-on interaction without compromising safety. It’s an ideal educational platform for chemical engineering, pharmaceutical, and applied science curricula.

  • Our Jacketed Glass Reactor LJGR-B10 includes a bottom-positioned drain valve that allows for full removal of residual materials following each process cycle. This design minimizes pooling inside the vessel, enabling better drainage and rinsing between experiments. The wide vessel opening ensures easy access for internal cleaning, whether by solvent rinse or gentle wiping. This is especially useful for labs handling a variety of compounds that require strict isolation between runs. Faster cleaning turnaround allows technicians to switch between procedures without extended downtime. By supporting rapid transition between workflows, it increases daily throughput capacity. The materials resist staining or binding from most reaction residues. This combination of structure and material supports efficient post-use maintenance.

  • Labtron’s Jacketed Glass Reactor LJGR-B10 is designed to remain structurally stable even when subjected to low-pressure environments during vacuum operations. Its reinforced glass chamber allows continuous observation of distillation or drying behaviors, such as bubbling or reflux transitions. This is valuable in procedures where control over solvent evaporation under reduced pressure is critical. The build quality prevents warping or distortion even under long-duration vacuum cycles. Its ports and seals are vacuum-tight, maintaining consistent internal pressure and preventing leaks. The reactor integrates well with rotary evaporators, vacuum pumps, and short-path systems. It’s well suited for solvent removal from heat-sensitive compounds. This stability and visual clarity make it a reliable solution for vacuum-assisted chemical processes.

  • Labtron’s Jacketed Glass Reactor LJGR-B10 is equipped with multiple ports across the lid, enabling the integration of various attachments required for stepwise chemical processes. Users can insert reflux condensers, additional feed tubes, or gas flow channels without disconnecting the existing system. Each connection point remains independently sealed, allowing smooth transitions between distinct reaction phases. This configuration is especially beneficial for staged syntheses where intermediate removal or catalyst addition is required at different time intervals. The modular design avoids unnecessary disassembly during mid-run adjustments, preserving the workflow’s integrity. Such adaptability supports advanced reaction planning in custom or multi-route chemical syntheses. The reactor promotes clean process separation while maximizing efficiency across complex operations. Researchers benefit from time-saving configurations without compromising reaction control.

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