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Hydrothermal Synthesis Autoclave Reactor with PTFE Lined Vessel 500 ml

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NG10MCHW0946
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€508.00
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1 Piece: 508 € 
5 Pieces: 2214 € 

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Hydrothermal Synthesis Autoclave Reactor

PTFE Lined Vessel, 500 ml

The 500 ml Hydrothermal Synthesis Autoclave Reactor is a high-capacity pressure vessel designed for conducting complex chemical reactions at elevated temperatures and pressures. This laboratory instrument is constructed with a 304 Stainless Steel outer body for mechanical strength and a Polytetrafluoroethylene (PTFE) inner chamber to ensure superior chemical resistance. The reactor is engineered for durability, featuring a 13.5 mm thick outer body and an 8 mm thick PTFE chamber to handle a maximum working pressure of 3 MPa. It operates at a safe temperature of 180°C, with a maximum capability of 240°C, making it suitable for processing highly acidic or alkaline solutions due to its excellent corrosion resistance and strong airtightness. Designed for ease of use, the reactor includes smooth-locking threads and an 8*200 mm stainless steel rod to facilitate safe handling during high-temperature synthesis and material digestion processes.

Technical Properties

Reactor Total Height 220 ml
Total Weight 10.6 kg
Outer Body Material 304 Stainless Steel
Maximum Operation Pressure 3 MPa
Maximum Operation Temperature 180 °C
Lower Disc Thickness 10 mm
Upper Disc Thickness 10 mm
Upper SS Cap 50 mm
Outer SS Body Height 161 mm
Outer SS Body O.D. 118 mm
Outer SS Body I.D. 91 mm
Outer SS Body Thickness 13.5 mm
SS Rod Size 8*200 mm
Inner Chamber Height 138 mm
Inner Chamber Thickness 8 mm
Inner Chamber O.D. 91 mm

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Applications

  • Large-Scale Nanoparticle Synthesis: Efficiently produces larger batches of nanoparticles through hydrothermal methods, leveraging the reactor's high-pressure and high-temperature environment.
  • Bulk Chemical Synthesis: Designed for carrying out hydrothermal reactions requiring higher volumes for increased yield in chemical research and production.
  • Cultured Crystal Growth: Provides the necessary airtightness and temperature stability (up to a safe 180°C) for the extended growth periods required for high-quality crystals.
  • Industrial Polymerization Reactions: Facilitates the polymerization of materials under controlled thermal and pressure conditions (up to 3 MPa).
  • Advanced Hydrothermal Decomposition: Used for the breakdown of complex substances through hydrothermal decomposition and oxidation processes.
  • Material Digestion: Functions as a robust material digester for the dissolution of refractory materials, organic chemicals, and heavy metals using acidic or alkaline solutions.
  • Catalyst Development: Ideal for the synthesis and precipitation of specialized catalysts that require corrosion-resistant environments.
  • High-Volume Crystallization: Supports larger-scale crystallization processes, ensuring high purity through the protective PTFE inner chamber.

 

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