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Single Layer Glass Reactor LSGR-A17

Single Layer Glass Reactor LSGR-A17

Single Layer Glass Reactor LSGR-A17 features a 50-liter vessel, ideal for handling larger sample volumes in lab-scale synthesis. The integrated drain valve allows easy material discharge without tilting. Its reinforced stirring shaft reduces wobble, ensuring consistent motion during extended mixing. Our Single Layer Glass Reactor supports applications in chemical engineering, pharmaceuticals, and research laboratories.

Single Layer Glass Reactor LSGR-A17 front view
Single Layer Glass Reactor LSGR-A17
Single Layer Glass Reactor LSGR-A17
Single Layer Glass Reactor LSGR-A17
Single Layer Glass Reactor LSGR-A17
Single Layer Glass Reactor LSGR-A17
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Glass Vessel Volume 50 L
Glass Vessel Diameter Φ 470 mm
Temperature Range -80 to 250 ℃
Bath Temperature RT to 180 ℃
Temperature Measurement Accuracy +/-1℃
Heating Power 8000 W
Stirring Speed 0 to 450 rpm
Vacuum Degree 0.0098 Mpa
Dropping Funnel 2000 ml
Power Consumption 120 W
Power Supply Stirrer 220V/50Hz
Power Supply Heating Bath 380V/50 Hz
Dimensions (W×D×H) 910×640×2130 mm
Weight 58 kg
  • Transparent borosilicate glass view

  • Thermal-resistant vessel structure

  • Flexible power input configuration
  • Stable vertical support frame
  • Long-duration mixing stability

Single Layer Glass Reactor LSGR-A17 is a high-capacity reactor used for chemical synthesis, mixing, and reactions under controlled temperature and vacuum. This system ensures uniform heating and efficient stirring, making it ideal for applications in pharmacticals, chemical engineering, and research labs.

Models of Single Layer Glass Reactor

Labtron Single Layer Glass Reactor operates across a wide temperature range, supporting controlled heating and cooling for evaporation and reaction tasks. They include a vacuum pressure gauge that allows users to monitor internal pressure in real time. Their stepless speed control enables smooth and adjustable stirring across a range of viscosities. These reactors operate with minimal noise, making them suitable for quiet lab environments. Our Single Layer Glass Reactor supports applications in pharmaceuticals, chemical research, metallurgy, aerospace, and academic laboratories.

Single Layer Glass Reactor LSGR-A20

Single Layer Glass Reactor LSGR-A20

  • Glass Vessel Volume : 200 L Cylindrical
  • Receiving Bottle : 10 L
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A12

Single Layer Glass Reactor LSGR-A12

  • Glass Vessel Volume : 3 L
  • Glass Vessel Diameter : Φ195 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A11

Single Layer Glass Reactor LSGR-A11

  • Glass Vessel Volume : 2 L
  • Glass Vessel Diameter : Φ166 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A15
Single Layer Glass Reactor LSGR-A15
  • Glass Vessel Volume : 20 L
  • Glass Vessel Diameter : Φ355 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A19
Single Layer Glass Reactor LSGR-A19
  • Glass Vessel Volume : 100 L Cylindrical
  • Glass Vessel Diameter : Φ 610 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A10

Single Layer Glass Reactor LSGR-A10

  • Glass Vessel Volume : 1L
  • Glass Vessel Diameter : Φ131mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A16

Single Layer Glass Reactor LSGR-A16

  • Glass Vessel Volume : 30 L
  • Glass Vessel Diameter : Φ420 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A18

Single Layer Glass Reactor LSGR-A18

  • Glass Vessel Volume : 100 L ball shaped
  • Glass Vessel Diameter : Φ 610 mm
  • Temperature Range : -80 to 250 ℃
  • Bath Temperature : RT to 180 ℃
Single Layer Glass Reactor LSGR-A17 FAQ's
  • Our Single Layer Glass Reactor is built using high borosilicate glass and PTFE, both of which resist unwanted chemical interaction with sensitive substances. This allows users to safely conduct experiments with unstable or reactive compounds. Even during prolonged exposure, the contact surfaces prevent contamination or degradation. These materials maintain the structural and chemical purity of the reactor’s interior. Reaction integrity is preserved, supporting research with volatile or corrosive chemicals. The components do not absorb, leach, or break down under diverse chemical exposures. This ensures safety and consistency across multiple runs. The reactor suits applications requiring neutral reaction surfaces.

  • The Single Layer Glass Reactor uses an enclosed stainless steel bath to circulate heat uniformly around the vessel for extended periods. This helps maintain a consistent thermal environment even during lengthy synthesis runs. Thermal stability is essential to avoid unwanted side reactions or product inconsistencies. The bath is insulated to reduce heat loss and retain steady temperatures throughout the process. Controlled conditions allow accurate replication of heating steps in repeated trials. This feature is ideal for protocols requiring multi-hour temperature exposure. Researchers can run heat-dependent processes without constant monitoring. The system ensures uniform conditions throughout reaction phases.

  • Our Single Layer Glass Reactor is designed with chemically inert contact materials that maintain the purity of delicate compounds. In bio-pharmaceutical work, preserving sample quality is essential for testing or formulation. The reactor prevents material interference, ensuring active ingredients remain unchanged during reaction. Its closed design also helps maintain a controlled interior atmosphere, minimizing contamination risks. This makes it suitable for small-batch synthesis or pilot drug research. Stability under varying conditions is crucial for producing reliable experimental data. The reactor is ideal for pharmaceutical teams needing tight control over reaction conditions. It supports integrity in regulated lab workflows.

  • The Single Layer Glass Reactor includes a copper brushless motor engineered to limit sound generation during stirring. This low-noise setup benefits shared lab spaces or classrooms where multiple devices run simultaneously. The motor’s internal design avoids the friction typical of older drive systems. Vibration control features also reduce audible disturbances during mixing. Its quiet performance allows researchers to work without excessive background disruption. Maintaining acoustic comfort improves focus during long sessions. The structure keeps operating noise at a manageable level. It’s ideal for settings that prioritize a quiet working atmosphere alongside performance.

  • Single Layer Glass Reactor uses insulated materials and protective design elements to limit heat transfer to external surfaces. This safeguards users from accidental burns while adjusting or inspecting the unit during operation. The reinforced frame remains cool to the touch despite internal heating activity. All exposed areas are engineered to handle thermal stress without distorting. The build keeps vapors and heat sealed within the system. Researchers can safely observe reactions or make adjustments mid-process. These protections are important for labs with frequent hands-on work. The reactor combines control with safe interaction during high-heat use.

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Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608

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