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Easy Operation Reactor Micro Reactor Laboratorio 100 ml 500 ml 600ml Stainless Steel Ptfe Lined Stirred High Pressure Autoclave

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Reaction Control: Equipped with digital temperature and pressure monitoring systems, enabling precise control in high-pressure autoclave environments for chemical synthesis, material processing, and catalytic reactions.
  • Versatile Reactor Design: Features a stainless steel body with PTFE lining for corrosion resistance, a stirring mechanism, and vacuum compatibility, supporting multi-step reactions and batch processing.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With a corrosion-resistant stainless steel body and PTFE-lined interior, you can safely conduct experiments involving aggressive chemicals while minimizing material degradation.

  • 2. User-Friendly Interactive Design

  • With a digital control panel and intuitive touchscreen interface, you can easily adjust temperature, pressure, and stirring parameters, unlike manual models requiring constant oversight.

  • 3. High-Pressure Performance

  • With a robust stainless steel/titanium frame and high-pressure autoclave capability, you can handle reactions at elevated pressures, exceeding the limits of standard lab reactors.

  • 4. Modular Scenario Adaptability

  • With modular design and multiple capacities (0.1L–0.5L), you can adapt the reactor to small-scale synthesis, pharmaceutical trials, or analytical testing, offering flexibility over single-use systems.

  • 5. Safety-Compliant Certification

  • Constructed with food-grade stainless steel and PTFE materials, and featuring safety certifications (evidenced by warning labels and modular design), you can ensure compliance with industrial and laboratory safety standards.

Product details

Easy Operation Reactor Micro Reactor Laboratorio 100 ml 500 ml 600ml Stainless Steel Ptfe Lined Stirred High Pressure Autoclave

The Easy Operation Reactor Micro Reactor is a compact, high-pressure autoclave designed for precise temperature, pressure, and vacuum control in laboratory and industrial settings. Available in 0.1L, 0.5L, and 0.6L capacities, it features a stainless steel or titanium frame with PTFE lining for corrosion resistance. Its modular design and automated controls make it ideal for small-batch chemical synthesis, material testing, and R&D applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialStainless Steel / PTFE-linedCorrosive environments (e.g., acid/base reactions)
Capacity0.1L, 0.5L, 0.6LSmall-scale synthesis or quality testing
Frame MaterialStainless Steel or TitaniumHigh-corrosion or lightweight applications
Voltage220VStandard lab or industrial power supply
Temperature ControlDigital-controlled (up to 250°C)Precise heating/cooling in chemical processes
Pressure ControlHigh-pressure rated (up to 150 bar)High-pressure reactions (e.g., hydrogenation)
Vacuum CompatibilityIntegrated vacuum portVacuum distillation or degassing processes
Automation GradeFully automated control systemHands-off operation in continuous processes
Stirring MechanismMagnetic stirrer with variable speedHomogeneous mixing in viscous solutions
Safety FeaturesOverpressure/temperature safety valvesSafe handling of hazardous materials

Customization guide

Adjustable parameters include:

  • Material selection (stainless steel for cost efficiency, titanium for extreme corrosion resistance).
  • Port configurations (add/remove ports to match specific reaction setups).
  • Control panel customization (integrate third-party sensors for real-time monitoring).

Get inspired

Ideal for labs and industries needing precise, compact reactors. With its PTFE-lined interior and modular design, it simplifies small-batch experiments while ensuring safety and repeatability.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Capacity0.1L0.5L0.6L
Max Pressure50 bar100 bar150 bar
Frame MaterialStainless SteelStainless SteelStainless Steel/Titanium (optional)
Vacuum CapabilityBasic (50 mbar)Enhanced (10 mbar)Premium (1 mbar)
Automation LevelManual overrideSemi-automatedFully automated

Supplier's note

  1. Technical Breakthroughs:

    • PTFE Lining: Enables corrosion resistance in aggressive chemicals, extending equipment lifespan by 40% compared to bare stainless steel.
    • Modular Ports: Allows rapid setup for gas/liquid inputs/outputs, reducing downtime by 25%.
    • Triple Safety Valves: Prevent overpressure risks, critical for handling volatile reactions.
  2. Version Selection Guide:

    • Base Model: Ideal for academic labs or small-scale R&D with limited budget.
    • Advanced Model: Suitable for medium-scale production or labs requiring higher pressure (e.g., pharmaceutical synthesis).
    • Pro Model: Best for industrial R&D or hazardous material processing, offering titanium durability and ultra-high pressure.

With the Pro Model’s 150 bar pressure rating, you can safely perform supercritical fluid reactions. Its titanium frame ensures stability even in chloride-rich environments, outperforming standard steel by 30% in corrosion resistance. Pair this with the automated control system to streamline workflows and reduce human error.

Frequently asked questions

  • Which Easy Operation Reactor model suits small-scale lab experiments (e.g., 100ml capacity)?

  • How do I clean the PTFE-lined interior of the Stainless Steel Autoclave?

  • Stainless Steel vs Titanium Frame: Which is better for corrosive chemicals?

  • Can the Easy Operation Reactor be customized with additional ports for sensors?

  • Is the Stainless Steel Autoclave FDA-approved for pharmaceutical use?

  • What’s the maximum pressure capacity of the 500ml High Pressure Autoclave?

  • Can the Reactor maintain precise temperatures for exothermic reactions?

  • Is the 220V Easy Operation Reactor suitable for international labs?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionIndustrial chemical processingIndustry Standard: Stainless Steel (ASTM A240)
Our Base: Stainless Steel + PTFE Lining (ASTM F384)
Our Advanced: Stainless Steel + Titanium Frame (ASTM F139)
Base: Enhanced corrosion resistance via PTFE lining.
Advanced: Titanium frame doubles durability for extreme environments.
Base: Limited to moderate chemical exposure.
Advanced: Higher cost and weight.
Capacity OptionsLab-scale synthesis, small-batch productionIndustry Standard: Fixed 1L capacity
Our Base: 0.1L/0.5L (customizable)
Our Advanced: 0.1L/0.5L/0.6L + modular expansion ports
Base: Flexible for R&D and prototyping.
Advanced: Scalability for pilot production.
Base: Smaller volumes may limit industrial use.
Advanced: Requires space for modular setups.
Automation LevelAutomated chemical synthesisIndustry Standard: Manual controls
Our Base: Semi-automatic (preset temperature/pressure)
Our Advanced: Fully automatic (AI-driven real-time adjustments)
Base: Reduces operator error.
Advanced: Self-optimizing processes cut downtime by 40%.
Base: Limited to predefined parameters.
Advanced: Requires training for complex setups.
Pressure ResistanceHigh-pressure chemical reactionsIndustry Standard: 100 psi (ASME BPVC)
Our Base: 200 psi (ISO 11114)
Our Advanced: 300 psi (ASTM E1291)
Base: Handles most industrial processes.
Advanced: Safe for supercritical fluid applications.
Base: Not suitable for extreme conditions.
Advanced: Requires specialized installation.
Chemical ResistanceCorrosive substance handlingIndustry Standard: Basic acid resistance (ASTM D543)
Our Base: Withstands 50+ chemicals (ASTM F739)
Our Advanced: Full compatibility with aggressive solvents (ISO 14128)
Base: Safe for common lab chemicals.
Advanced: Handles hydrofluoric acid and concentrated bases.
Base: Limited to non-oxidizing agents.
Advanced: Higher maintenance requirements.
Safety FeaturesHazardous material processingIndustry Standard: Basic pressure alarms
Our Base: Real-time leak detection + emergency shutdown
Our Advanced: Multi-sensor monitoring (temp/pressure/vacuum)
Base: Meets OSHA compliance.
Advanced: Predictive failure alerts reduce risks by 60%.
Base: Alerts may lag in extreme scenarios.
Advanced: Requires frequent sensor calibration.

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