Teflon Lined Stainless Autoclave
(1)25ml/50ml/100ml/150ml/200ml/250ml/300ml/400ml/500ml/1000ml---PTFE/≤ 220°C
(2)25ml/50ml/100ml/150ml/200ml/250ml/300ml/400ml/500ml/1000ml---PPL/≤ 280°C
***Price List for whole above, inquire us to get
2. Customization:
(1)Design support
(2)Directly supply the Senior R&D organic intermediate, shorten your R&D time and cost.
(3)Share the advanced purifying technology with you
(4)Supply the high quality chemicals and analysis reagent
(5)We want to assist you on Chemical Engineering (Auto CAD, Aspen plus etc.)
3. Assurance:
(1)CE and ISO certification Registered
(2)Trademark: ACHIEVE CHEM(since 2008)
(3)Replacement parts within 1-year for free
Description
Technical Parameters
A Teflon lined stainless autoclave is a specialized laboratory or industrial equipment. The stainless steel construction ensures the autoclave can withstand the rigors of repeated high-temperature cycles without degrading, making it ideal for demanding applications in medical, pharmaceutical, research, and food processing industries. The inner Teflon lining provides a smooth, non-porous surface that resists chemicals, acids, alkalis, and most organic solvents, ensuring easy cleaning and minimizing the risk of contamination or residue buildup.
This combination allows the teflon lined stainless autoclave to effectively sterilize a wide range of materials, including glassware, surgical instruments, and media, through the application of steam under pressure. The Teflon lining also helps to reduce friction during loading and unloading, minimizing the risk of scratches or damage to delicate items. Furthermore, the non-stick surface facilitates the removal of condensate, which can be crucial in maintaining the integrity of sensitive samples or preventing the growth of microorganisms.
Specifications
Features
What is Teflon
Teflon, commonly referred to as polytetrafluoroethylene (PTFE), is a unique synthetic polymer material renowned for its exceptional characteristics. Its most prominent feature is its non-stick surface, which allows it to resist adhesion from virtually all substances, including water, oil, acids, alkalis, and most organic solvents. This non-stick property not only facilitates easy cleaning but also minimizes the risk of contamination and residue buildup, making it ideal for use in cooking utensils, laboratory equipment, and industrial applications.
Moreover, Teflon exhibits outstanding heat resistance, with a continuous operating temperature range of -240°C to +260°C, making it suitable for high-temperature processing without degradation. Its chemical inertness ensures that it remains stable under harsh conditions, preventing chemical reactions or corrosion, even when exposed to aggressive chemicals.
Another notable feature of Teflon is its low coefficient of friction, which enables smooth movement and reduced wear on mating surfaces. This property is particularly valuable in mechanical applications, such as bearings and seals, where reduced friction leads to improved efficiency and longer lifespan.
Furthermore, Teflon is electrically non-conductive and has excellent insulation properties, making it suitable for use in electrical components and high-voltage applications. Its weather resistance and UV stability also contribute to its long-term durability and performance in outdoor environments.
Enhanced heat transfer effect: The jacket and stirrer of a stainless steel high-pressure kettle lined with polytetrafluoroethylene can enhance the heat transfer effect inside the kettle, allowing heat to be evenly distributed among the materials inside the kettle. This helps to improve reaction speed and reduce energy consumption.
Maintain a sealed environment: The sealing system of polytetrafluoroethylene lined stainless steel high-pressure kettle can effectively maintain the sealing environment inside the kettle and prevent material leakage during the reaction process. This sealing performance helps to protect the safety of operators and reduce the impact on the environment.
Realize stirring and mixing: The agitator of teflon lined stainless autoclave with polytetrafluoroethylene can provide uniform stirring and mixing, allowing the materials inside the kettle to fully contact and mix, thereby promoting the reaction. The mixing speed and mixer type can be adjusted as needed.
Extend the service life of the equipment: Due to the structure and usage characteristics of PTFE lined stainless steel high-pressure vessels, their service life is longer. Under correct use and maintenance, it can achieve long-term stable operation and have a long service life.
Meeting diverse response needs: Polytetrafluoroethylene lined stainless steel high-pressure vessels come in various specifications and models, which can meet the reaction needs of different scales and types. Whether it is large-scale industrial production or laboratory scale research experiments, polytetrafluoroethylene lined stainless steel high-pressure vessels can be used to meet their needs.
Improve production efficiency and product quality: The use of PTFE lined stainless steel high-pressure vessels can reduce reaction time and improve production efficiency. Meanwhile, due to its stable high-temperature and high-pressure environment, it can promote the reaction and improve the quality and performance of the product.
Reduce the impact on the environment: The use of polytetrafluoroethylene lined stainless steel high-pressure vessels can reduce the generation of waste gas and liquid during the reaction process. Meanwhile, due to its good sealing performance, it can reduce material leakage and thus reduce the impact on the environment.
How to Choose Stirrers
Viscosity and Fluid Characteristics
The viscosity of the medium being stirred is a crucial factor.
- For low-viscosity fluids, a high-speed propeller or turbine stirrer may be suitable, promoting rapid mixing and turbulence.
- For high-viscosity fluids, an anchor or paddle stirrer with lower rotational speeds might be more effective, as they can provide a broader sweeping action to avoid dead zones and promote better mixing.
Reaction Dynamics
- If the autoclave is used for chemical reactions, the stirring apparatus must promote effective heat and mass transfer. Turbine stirrers are known for their ability to generate high shear rates and disperse small particles, facilitating better reaction kinetics.
Mixing Requirements
Depending on the level of mixing required (homogeneity, distribution, etc.), the stirrer type and configuration must be tailored.
- A helical ribbon stirrer or screw agitator may be more suitable for blending powders and liquids or achieving uniform distributions in high-viscosity systems.
Turbine Stirrer
Ideal for medium to high viscosity fluids requiring efficient mixing and dispersion.
01
Anchor Stirrer
Effective for high viscosity fluids, promoting gentle stirring and reducing dead zones.
02
Paddle Stirrer
Versatile for a wide range of viscosities, particularly suited for applications requiring shear forces.
03
Helical Ribbon Stirrer
Excellent for blending powders and liquids, as well as viscous slurries.
04
Material Compatibility:
Teflon, being highly resistant to chemicals and corrosion, can accommodate a wide range of stirring media. However, it's crucial to ensure that the stirring apparatus material (such as stainless steel, alloys, or ceramic coatings) is also compatible with the intended use and media, avoiding any potential contamination or degradation.
Temperature and Pressure Conditions:
The autoclave's operating temperature and pressure should be taken into account when selecting the stirrer. Some materials may not withstand extreme conditions, requiring specialized alloys or coatings.
Equipment Design and Accessibility:
The stirrer must fit seamlessly within the autoclave's dimensions and should not compromise its pressure and temperature capabilities. Additionally, accessibility for maintenance and cleaning should be considered.
Operational Efficiency and Maintenance:
Choosing a stirrer that minimizes energy consumption and simplifies maintenance routines can lead to cost savings in the long run.
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