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Teflon lined stainless steel autoclave reactor is engineered to meet the strict demands of industrial and laboratory chemical processes involving corrosive media. By integrating a PTFE liner within a stainless steel pressure vessel, this reactor design ensures both mechanical reliability and superior chemical compatibility.

Reactants are loaded into the PTFE liner, which is then sealed inside the stainless steel vessel. During heating, pressure builds within the liner while the outer vessel maintains structural stability. The inert liner prevents unwanted reactions between chemicals and the metal surface.
Small-volume autoclaves designed for research and material development.
Medium-capacity units suitable for process optimization and scale-up studies.
Large-volume reactors designed for continuous or batch industrial processing.
PTFE liners provide resistance to most acids, bases, and solvents, ensuring wide chemical compatibility.
The stainless steel shell enables operation under elevated pressure and temperature conditions.
Removable liners simplify cleaning and replacement, reducing downtime.
Used for specialty chemical synthesis and catalytic reactions.
Supports controlled reactions requiring high purity and corrosion resistance.
Applied in the synthesis of functional materials, battery components, and catalysts.
Autoclave reactors can be customized in liner material, vessel size, heating configuration, and safety systems. Customization ensures seamless integration into existing workflows.
When choosing a Teflon lined stainless steel autoclave supplier, B2B buyers should evaluate design expertise, manufacturing quality, compliance standards, and after-sales service.
Although the initial cost may be higher than standard reactors, the extended service life and reduced corrosion-related maintenance result in a favorable total cost of ownership.
Future developments focus on improved liner materials, enhanced safety systems, and smarter temperature and pressure control technologies.
| Model | BSF-10L | BSF-20L | BSF-30L | BSF-50L | BSF-100L |
| Power(W) | 200(1:3) | ||||
| External dimensions(mm) | 540*480*1800 | 550*700*1830 | 550*700*1950 | 700*600*2050 | 700*800*2270 |
| Number of cauldron lid openings | 8 | ||||
| Temperature measurement port | 50.5 chuck / φ8 temperature measuring tube | 50.5 chuck / φ12 temperature measuring tube | |||
| Drop hole | 50.5 mm chuck/1000 ml funnel | 50.5 mm chuck / 2000 ml funnel | |||
| Return hole | 50.5 chuck / φ38 | 50.5 chuck / φ38 | |||
| sight glass | φ51 | φ89 | |||
| sight glass | φ32 | / | |||
| Feeding port | / | φ89 | |||
| Pressure gauge port | 50.5 mm chuck / integrated pressure gauge | ||||
| exhaust vent | 2-way exhaust valve | ||||
| Mixing hole | SUS316L propeller-type mixing impeller | ||||
| High and low temperature resistance (°C) | -120~260 | ||||
| Stainless steel thickness (mm) | φ3 | φ4 | |||
| Discharge valve port diameter | φ35 | ||||

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