PPL Lined Hydrothermal 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
PPL lined hydrothermal autoclave is a high-performance equipment widely used in chemical reactions such as hydrothermal synthesis and solvothermal synthesis. PPL is a high-performance polymer material with excellent corrosion resistance and can be used in various chemical environments. Therefore, PPL lined hydrothermal high-pressure vessels can withstand the corrosion of most chemicals and can be widely used in various chemical reactions. In addition, the high-temperature resistance of the PPL lining is also excellent, which can maintain good chemical stability at high temperatures, thereby extending the service life of the equipment. PPL lined have excellent corrosion resistance, high-temperature performance, sealing performance, stirring ability, advanced control system, and applicability to various specifications and applications, making them widely used in materials science, chemical industry, energy field, environmental science, biomedical and other fields. Its high cost-effectiveness makes PPL lined an ideal choice for chemical reactions such as hydrothermal synthesis and solvothermal synthesis in many laboratories and industrial production.
We provide PPL lined hydrothermal autoclave, please refer to the following website for detailed specifications and product information.
Product: https://www.achievechem.com/chemical-equipment/hydrothermal-synthesis-reactor.html
Product Introduction
PPL lined hydrothermal autoclave is a high-pressure vessel used for chemical reactions such as hydrothermal synthesis and solvothermal synthesis. Mainly composed of kettle body, kettle cover, agitator, heating device, control system, etc. Among them, the kettle body is made of high-performance polymer materials, which have good corrosion resistance and high temperature resistance. The kettle cover is equipped with a feeding port and an exhaust port for convenient feeding and gas discharge. The mixer adopts continuously variable speed mixing, which can achieve uniform mixing of materials. The heating device adopts electric heating elements or oil bath heating methods, which can achieve precise temperature control. The control system adopts intelligent instruments or PLC control systems, which can achieve automated operations. This high-pressure kettle has excellent corrosion resistance and high-temperature performance, and is widely used in fields such as materials science, chemical industry, energy, environmental science, biomedicine, etc.

The following is a detailed description of the advantages of PPL lined autoclaves.
1. Excellent high-temperature performance
The PPL-lined hydrothermal has excellent high-temperature performance, which can maintain good stability and chemical properties at high temperatures. At high temperatures, the PPL lining can prevent the infiltration and erosion of chemicals, thereby ensuring the long-term use of the equipment and the stability of chemical reactions. At the same time, the PPL-lined hydrothermal can also achieve high-temperature and high-pressure reaction conditions, providing a more rigorous reaction environment for chemical reactions.
2. Good sealing performance
The sealing performance of the PPL lined hydrothermal high-pressure kettle is excellent, using high-performance sealing materials and advanced sealing structure design, which can effectively prevent the leakage of chemical substances and the entry of dust. This excellent sealing performance not only ensures the purity and safety of chemical reactions, but also reduces the maintenance and upkeep costs of equipment.
3. Strong mixing ability
The PPL lined hydrothermal high-pressure kettle is equipped with a continuously variable speed mixer, which can flexibly adjust the mixing speed. This powerful stirring ability not only makes the mixing of reaction materials more uniform and improves reaction efficiency, but also avoids local overheating or deposition of reaction materials, thereby ensuring the stability of chemical reactions and the long-term use of equipment.
4. Advanced control system
The PPL lined hydrothermal high-pressure kettle adopts intelligent instruments or PLC control systems, which can achieve automated operation and precise temperature and pressure control. This advanced control system not only reduces operational difficulty and human error, but also improves the accuracy and safety of experiments. Users can achieve automated control of the reaction process through simple operations, thereby improving work efficiency and reliability of experimental results.
5. Suitable for various specifications and applications
In order to meet the chemical reaction needs of different fields and processes, PPL lined hydrothermal high-pressure vessels can be customized with different specifications and applications of reaction vessel bodies, agitators, control systems, and other components. This flexibility allows the PPL-lined hydrothermal to adapt to various chemical reaction scales and process requirements, thereby expanding its application range and providing strong support for scientific research and technological development in different fields.
6. High cost-effectiveness
Although PPL lined hydrothermal autoclave is a high-performance chemical reaction equipment, its price is relatively reasonable and has a high cost-effectiveness. Compared with other similar products, PPL-lined hydrothermal not only provide excellent performance, but also have good economy. This high cost-effectiveness makes PPL-lined hydrothermal an ideal choice for chemical reactions such as hydrothermal synthesis and solvothermal synthesis in many laboratories and industrial production.
Product Parameter

All kinds of "Hydrothermal Synthesis Reactor", price list, you can choose online HERE
function

It is a high-performance equipment widely used in chemical reactions such as hydrothermal synthesis and solvothermal synthesis. Due to its excellent corrosion resistance and high temperature performance, PPL-lined hydrothermal have been widely used in fields such as materials science, chemical industry, energy, environmental science, and biomedicine.
In the field of materials science, there are widely used in reaction methods such as hydrothermal synthesis and solvothermal synthesis to prepare high-performance materials and nanostructures. The product serves as a reaction vessel, providing a high-temperature and high-pressure reaction environment that promotes the synthesis and crystallization process of materials. These materials include but are not limited to metal oxides, inorganic non-metallic materials, ceramic materials, composite materials, etc. By using a product, researchers can simulate the high-temperature and high-pressure environment in the Earth's crust, thereby preparing materials that are the same or similar to those found in natural environments in the laboratory.
In the chemical industry, PPL lined hydrothermal high-pressure vessels can be used to achieve various chemical reactions, such as hydrothermal oxidation, hydrothermal reduction, hydrothermal decomposition, hydrothermal synthesis, etc. These reactions can be carried out under high temperature and pressure conditions to prepare high value-added chemicals and functional materials. It can provide a suitable reaction environment, promote chemical reactions, and produce various high-performance chemicals. In addition, it can also be used for efficient energy conversion and storage in chemical reaction processes, such as the manufacturing of fuel cells and solar cells.
In the field of energy, reaction methods such as hydrothermal synthesis and solvothermal synthesis can prepare energy related materials and devices. PPL lined hydrothermal autoclave can provide a high-temperature and high-pressure reaction environment, promoting the synthesis and preparation process of energy materials. It can be used as electrode materials for fuel cells and absorbent materials for solar cells using hydrothermal methods. These materials need to be prepared under high temperature and pressure conditions to ensure their excellent energy conversion efficiency and service life. In addition, it can also be used in fields such as geothermal power generation and geothermal heating in geothermal energy utilization.
In the field of environmental science, it can be used to address environmental pollution issues. For example, by using a product to simulate the formation and transformation process of substances in the natural environment, the remediation and treatment of pollutants in soil and water can be studied and solved. In addition, it can also be used to prepare environmentally friendly catalysts and adsorbents to solve pollution problems in air and water.
In the field of biomedicine, PPL-lined hydrothermal autoclaves can be used for the preparation of drugs and biomaterials. For example, by using a product to simulate the high-temperature and high-pressure environment inside the human body, new drugs and biomaterials can be studied and developed. In addition, it can also be used to prepare biocompatible medical devices and artificial organs.
Operating Guide
When operating the PPL lined hydrothermal high-pressure kettle, the following points need to be noted:
(1)
Before use, it is necessary to check whether the kettle body, kettle cover, agitator and other components are intact and undamaged. If there is any damage, it should be replaced in a timely manner.
01
(2)
When adding materials, it is necessary to pay attention not to exceed the volume of the kettle body to avoid overflowing or affecting the reaction effect.
02
(3)
During the heating process, it is necessary to pay attention to temperature fluctuations and adjust the heating device in a timely manner to maintain temperature stability.
03
(4)
During the reaction process, attention should be paid to changes in pressure, and timely measures should be taken in case of abnormalities.
04
(5)
During the experiment, personal protective measures should be taken to avoid harm to the body caused by dangerous factors such as high temperature and pressure.
05
Maintenance and upkeep
In order to extend the service life of the PPL lined hydrothermal high-pressure kettle, regular maintenance and upkeep are required:
(1)
Regularly inspect the kettle body, lid, agitator and other components for cracks, deformation, and other damage. If necessary, replace them in a timely manner.
01
(2)
Regularly clean the inside and outside of the kettle to remove accumulated dust and dirt.
02
(3)
Regularly check the bearings and gears of the mixer for wear, and replace them promptly if necessary.
03
(4)
Regularly check the electric heating components, heat transfer oil, and other components of the heating device for leaks, aging, and other phenomena. If necessary, replace them in a timely manner.
04
(5)
Regularly conduct comprehensive inspections and maintenance of equipment to ensure its normal operation and extended service life.
05
Safe use regulations
In order to ensure the safe use of PPL lined hydrothermal autoclaves, it is necessary to pay attention to the following specifications:
(1)
Before use, it is necessary to carefully read the user manual and understand the operating methods, precautions, and maintenance methods of the equipment.
(2)
During the operation process, it is necessary to comply with the laboratory safety rules and regulations, and equipment must not be dismantled or repaired arbitrarily.
(3)
During the feeding process, attention should be paid to avoiding the leakage and overflow of chemicals to avoid harm to skin and the environment.
(4)
During the heating process, attention should be paid to controlling temperature fluctuations to avoid damage to the equipment caused by high or low temperatures.
(5)
During the reaction process, attention should be paid to controlling the changes in pressure to avoid equipment damage or dangerous factors caused by overpressure.
(6)
During the experiment, personal protective measures should be taken to avoid harm to the body caused by dangerous factors such as high temperature and pressure.
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