

Labotemp Hydrothermal Reactor Autoclave HRA-08 provides a safe and reliable solution for high-temperature, high-pressure chemical synthesis in research and analytical laboratories. Featuring a 2000 mL working volume, 220°C safe operating temperature, and 3 MPa maximum working pressure, the reactor supports demanding laboratory processes with consistent performance. Constructed with a durable 304 stainless steel outer vessel and a chemically resistant PTFE liner, it offers excellent resistance to acids, alkalis, and corrosive chemicals while minimizing sample contamination. This hydrothermal autoclave is widely used for nanomaterial preparation, crystal growth, compound synthesis, material development, and other hydrothermal synthesis applications across universities, research institutes, and industrial laboratories.
Designed for long-term laboratory use, the HRA-08 features a precision sealing system that helps maintain stable pressure throughout the reaction process while ensuring safe operation. The removable PTFE liner simplifies sample loading, cleaning, and maintenance, while the corrosion-resistant construction supports repeated use with aggressive chemical media. With a recommended heating and cooling rate of ≤5°C/min, the hydrothermal reactor promotes controlled reaction conditions and reproducible experimental results.
Why Choose Labotemp Hydrothermal Reactor Autoclave HRA-08?
✓ High Temperature & Pressure: Operates safely up to 220°C and 3 MPa for demanding laboratory reactions.
✓ Chemical-Resistant Construction: 304 stainless steel body with a PTFE liner provides excellent corrosion resistance.
✓ Reliable Laboratory Performance: Precision sealing system, removable liner, and controlled heating/cooling support repeatable experimental results.
| No. | Specification | Value |
|---|---|---|
| Reactor & Operating Performance | ||
| 1 | Capacity | 2000 mL |
| 2 | Maximum Working Pressure | 3 MPa |
| 3 | Safe Working Temperature | 220 °C |
| Liner & Construction | ||
| 4 | Liner Outer Diameter | 180 mm |
| 5 | Liner Height | 141 mm |
| 6 | Material | 304 Stainless Steel, PTFE Liner |
| Dimensions & Weight | ||
| 7 | Height | 220 mm |
| 8 | Outer Diameter of Reactor | 270 mm |
| 9 | Net Weight | 32 kg |
| 10 | Gross Weight | 40 kg |
| 11 | Packing Dimension | 33 × 27 × 32 cm |
| Operating Information | ||
| 12 | Recommended Filling Volume | 60% to 80% of Liner Capacity |
| 13 | Maximum Filling Volume | 80% of Liner Capacity |
| 14 | Recommended Heating and Cooling Rate | ≤5 °C/min |
| 15 | Heating Equipment | Laboratory Drying Oven |
| 16 | Liner Options | PTFE / PPL |
| Safety & Construction | ||
| 17 | Sealing Design | Leak Proof |
| 18 | Outer Vessel | Stainless Steel |
| 19 | Liner | Removable PTFE / PPL |
| 20 | Pressure Monitoring | Pressure Gauge |
| 21 | Clamp | Stainless Steel Clamp |
Nanomaterial Synthesis: Suitable for hydrothermal preparation of nanoparticles, nanostructured materials, and advanced functional materials under controlled temperature and pressure conditions.
Hydrothermal Synthesis: Designed for laboratory-scale hydrothermal and solvothermal reactions requiring elevated temperature, pressure, and controlled reaction environments.
Crystal Growth: Suitable for crystal growth and preparation of inorganic and advanced materials using high-temperature aqueous or chemical reaction processes.
Compound Synthesis: Supports synthesis and processing of chemical compounds where controlled high-pressure and high-temperature conditions are required.
Materials Science: Useful for developing ceramics, catalysts, inorganic compounds, nanomaterials, and other advanced materials.
Chemical Research: Suitable for high-pressure chemical reactions, dissolution studies, reaction screening, and laboratory-scale process development.
Environmental Research: Supports controlled digestion and processing of compatible environmental samples and materials.
Academic & Industrial Laboratories: The 2000 mL capacity is suitable for research institutions, universities, material science laboratories, chemical laboratories, and industrial R&D facilities requiring larger-volume hydrothermal processing.
