Teflon Hydrothermal Reactor
(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
The teflon hydrothermal reactor is an innovative experimental device specifically engineered to simulate the extreme conditions found deep within the Earth's crust, where high temperatures and pressures drive complex chemical reactions and mineral formations. This reactor provides scientists with a means to recreate these conditions in a controlled laboratory setting, enabling them to better understand the chemical composition, mineral genesis, and geological processes occurring at depth.
The core principle lies in its ability to mimic the harsh environments of the deep crust, which lies between the Earth's lithosphere and the upper mantle. Here, temperatures can reach several hundred degrees Celsius and pressures can exceed several thousand atmospheres. Such conditions are beyond the capabilities of ordinary experimental equipment, necessitating the use of advanced technologies like the Teflon reactor.
The reactor's design leverages the exceptional properties of Teflon, known for its chemical inertness, high temperature resistance, and non-stick surface. These attributes make Teflon an ideal material for lining the reactor chamber, ensuring that the experimental conditions remain consistent and contamination is minimized. The reactor is equipped with sophisticated heating and pressure control systems to accurately simulate the desired temperature and pressure profiles.
By utilizing it, scientists can conduct experiments that were previously unfeasible, gaining valuable insights into the geological processes and chemical reactions occurring deep within the Earth. This knowledge is crucial for understanding the Earth's internal workings, predicting natural hazards, and exploring potential mineral resources.
In summary, the teflon hydrothermal reactor represents a significant advancement in geological and geochemical research, offering a powerful tool for simulating and studying the extreme conditions of the Earth's deep crust.
Specifications
|
Model |
AC122-15 |
AC122-25 |
AC122-30 |
AC122-50 |
AC122-100 |
AC122-150 |
AC122-200 |
AC122-250 |
AC122-300 |
AC122-400 |
AC122-500 |
AC122-1000 |
|
Capacity (mL) |
15 |
25 |
30 |
50 |
100 |
150 |
200 |
250 |
300 |
400 |
500 |
1000 |
|
Material |
Kettle body is stainless steel, the liner is PTFE or PPL. |
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|
Pressure (MPa) |
Less than 3 |
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|
Temp. (°C) |
220/260/280 |
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50ML
It is the smallest and suitable for small-scale chemical reaction experiments. The stirrer is a magnetic stirrer, the heating system is an electric heating sleeve, and the pressure control system is manually controlled. This specification of equipment is suitable for studying minerals and chemical reactions deep in the Earth's crust, and can simulate high-temperature and high-pressure environments ranging from 300 degrees to 350 degrees.
01
100ML
Which is slightly larger than the 50ml specification and suitable for conducting medium-sized chemical reaction experiments. Its mixer, heating system, and pressure control system are similar to the 50ml specification, but with higher heating power, it can simulate higher temperature environments. This specification of equipment is suitable for deeper research on minerals and chemical reactions deep in the Earth's crust.
02
200ML
Larger than the 100ml specification and suitable for conducting large-scale chemical reaction experiments. Its mixer, heating system, and pressure control system are similar to the specifications of 100ml, but with higher heating power, it can simulate higher temperature environments. This specification of equipment is suitable for studying complex chemical reactions deep in the Earth's crust, as well as the synthesis and screening of drugs and catalysts.
03
500ML
The largest of all specifications and suitable for conducting large-scale chemical reaction experiments. Its mixer, heating system, and pressure control system are similar to the specifications of 200ml, but with higher heating power, it can simulate higher temperature environments. This specification of equipment is suitable for the study of large-scale complex chemical reactions deep in the Earth's crust, as well as the synthesis and screening of drugs and catalysts.
04
Overall, teflon hydrothermal reactors of different specifications have different reactor volumes, agitators, heating systems, and pressure control systems, making them suitable for chemical reaction experiments and research needs of different scales. Choosing appropriate specifications can better simulate the environment deep in the crust, providing necessary experimental conditions for studying chemical reactions deep in the crust.
Working Conditions
The working temperature can usually reach as high as 300-400 degrees Celsius, which is to simulate the high-temperature environment deep in the crust. The temperature in the deep crust is usually between 100-400 degrees Celsius, so equipment needs to be able to simulate such temperature conditions.
The working pressure can reach several hundred thousand Pascals, which is to simulate the pressure conditions deep in the crust. The pressure in the deep crust is usually around several hundred thousand Pascals, so equipment needs to be able to simulate such pressure conditions.
The working medium can be water or other liquids, which needs to be selected according to research needs. When simulating chemical reactions deep in the crust, it is necessary to consider various chemical substances inside the crust, including inorganic, organic, mineral, etc. Therefore, the equipment needs to be able to adapt to different liquid media.
The working conditions also need to consider high-pressure and high humidity environments, which is also to better simulate the environment deep in the crust. Under such conditions, the materials of the equipment need to have good corrosion resistance and high temperature resistance to ensure the accuracy of experimental results and the long-term use of the equipment.
Working Principle

The teflon hydrothermal reactor is an advanced piece of equipment designed for conducting hydrothermal reactions under controlled conditions. Utilizing the unique properties of Teflon, also known as polytetrafluoroethylene (PTFE), this reactor offers exceptional chemical inertness and temperature resistance, making it ideal for a wide range of applications in materials science, chemistry, and biotechnology.
Teflon's non-stick surface ensures that samples do not adhere to the reactor walls, facilitating easy cleanup and minimizing the risk of contamination. Its ability to withstand high temperatures and pressures allows for the execution of reactions at elevated conditions that would otherwise be challenging with traditional reactors. Furthermore, Teflon's chemical inertness means it doesn't react with the reactants, preserving the purity and integrity of the experimental outcomes.
The reactor is typically equipped with advanced heating and cooling systems to maintain precise temperature control, crucial for accurate and reproducible results. It also features robust pressure regulation mechanisms to handle the high pressures generated during hydrothermal processes. The design often incorporates transparent sections, such as quartz windows, enabling researchers to monitor reactions in real-time without disrupting the system.
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