Hydrothermal Synthesis Autoclave Reactor with PPL Lined Vessel 50 ml
- SKU:
- NG10MCHW0947
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Description
1 Piece: 186 €
5 Pieces: 822 €
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Hydrothermal Synthesis Autoclave Reactor
PPL Lined Vessel, 50 ml
The PPL-lined Hydrothermal Synthesis Autoclave Reactor is a high-performance pressure vessel engineered for advanced chemical synthesis that demands thermal thresholds beyond the capabilities of standard polymer liners. Featuring a reinforced stainless steel exterior and a specialized PPL inner chamber, this reactor ensures exceptional chemical inertness and structural integrity during prolonged thermal cycles. It is specifically designed to facilitate the digestion of refractory materials and the synthesis of complex nanoparticles under high-pressure conditions. The system’s superior airtightness and smooth-locking thread mechanism provide a stable environment for reactions involving aggressive acidic or alkaline solutions, making it an essential tool for researchers focused on high-temperature hydrothermal oxidation and crystal engineering.
Technical Properties
| Reactor Total Height | 50 ml |
| Total Weight | 1.65 kg |
| Outer Body Material | 304 Stainless Steel |
| Maximum Operation Pressure | 3 MPa |
| Maximum Operation Temperature | 250 °C |
| Lower Disc Thickness | 10 mm |
| Upper Disc Thickness | 10 mm |
| Upper SS Cap | 40 mm |
| Outer SS Body Height | 93 mm |
| Outer SS Body O.D. | 53 mm |
| Outer SS Body I.D. | 40 mm |
| Outer SS Body Thickness | 6.5 mm |
| SS Rod Size | 8*200 mm |
| Inner Chamber Height | 78 mm |
| Inner Chamber Thickness | 5 mm |
| Inner Chamber O.D. | 40 mm |
Product Image

Applications
- Advanced Chemical Synthesis: Enables complex chemical transformations and reactions that require elevated thermal environments.
- Nanoparticle Engineering: Optimized for the precision synthesis of high-performance nanomaterials and particles.
- Refractory Material Digestion: Acts as a robust vessel for the dissolution of heavy metals and organic chemicals that are resistant to standard methods.
- Controlled Crystal Growth: Provides the thermal stability and airtight environment necessary for cultured crystal development and crystallization.
- Catalyst Production: Ideal for the synthesis, precipitation, and development of specialized industrial catalysts.
- Hydrothermal Oxidation and Decomposition: Facilitates the breakdown of complex substances and high-pressure polymerization reactions.
- Corrosive Solution Processing: Designed for handling highly aggressive reagents due to its superior acid and alkali resistance.
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