Details and Specification of Hydrothermal Synthesis Reactor

Hydrothermal synthesis reactor is sturdy portable reactor chambers that are designed to withstand immense pressure and temperature as well. That makes them useful in various industrial and R&D applications which performed under high pressure and temperature. Generally, hydrothermal autoclave reactor may use in a wide variety of applications, from sterilizing processes in the medical care industry to even ensuring uniform and perfect applications of paint or coating.

Although every Hydrothermal reactor is made to enable high pressure and high-temperature reactions, they come in a variety of dimensions, varying from 25 ml and 50 ml to 1000 ml (1 liter). Apart from varying sizes, hydrothermal autoclaves are also classified according to their design, range of operating pressure, and their capacity. It makes it more efficient to perform experiments according to your specific needs.

As a hydrothermal Vessel is able to operate in environments with high temperatures and pressure, it makes it ideal for use in sterilizing medical, surgical, and laboratory equipment easily.

A hydrothermal Bomb is used in the synthesis process, to bits of help in the crystallization of substances from scorching aqueous solutions. It is a simple method of creating single crystals by dissolving various minerals in hot water under intense pressure. The hydrothermal autoclaves provide a productive atmosphere, being a robust pressure-resistant steel reactor.

The ideal hydrothermal synthesis reactor is designed to allow operators to control the supply of water and nutrient into the reactor chamber where the temperature gets set at gradually increasing levels along the length of the reactor. It allows the nutrient to dissolve easily at the higher temperature end of the reactor. Whereas, at the other, considerably cooler end of the reactor, the seed crystal gets deposited, leading to the formation of the required crystal artificially.

Although there are several different techniques used in synthesizing crystals, using a hydrothermal reactor has become the most popular, owing to the unique advantages it provides. This advanced technology allows you to form crystalline phases that are unstable at melting points otherwise. Besides, materials that tend to vaporize faster near their melting points can also be safely synthesized using the hydrothermal autoclave reactor.

Industries have been able to successfully create larger, better-quality crystals using the immense control that the reactor provides operators over the crystallizing process.

Technical Properties of Hydrothermal Synthesis Reactor:

• Material – Top-quality stainless-steel outer shell

• Working Pressure – ≤ 3 MPa (pressure gauge)

• Max Operating Temperature – ≤ 240˚ C

• Safe Operating Temperature – 200˚ C

• Heating/Cooling Rate – ≤ 5˚ C (min)

Applications of Hydrothermal Synthesis Reactor:

These are some of the significant applications where hydrothermal synthesis reactor is used successfully for the highest efficiency:

• Microbiology

• Medical Science

• Veterinary Medicine

• Podiatry

• Dentistry

• Mycology

• Tattooing

• Body Piercing

• Fabrication of Prosthetics

• Vulcanizing Rubber

• Curing Composites

• Synthesizing artificial crystals

Why Choose Us?

We are renowned for being the top supplier and OEM manufacturer of high-pressure hydrothermal autoclaves. With years of the constant maintenance of product quality to the highest standards, we have become a global entity with customers spread across the world such as Canada, UAE, the US, Asia, Africa, Australia, China, and European countries.

To know more about how you can order your specified hydrothermal synthesis reactor from us at an affordable price, give us a call or send a message using our Contact Us page.

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• Remarkably resistant to corrosion and leaks

• Teflon-coated stainless-steel manufacturing for better strength and reliability

• Safest design constantly quality-checked

• Multipurpose use in numerous industries

• Varying sizes for every requirement

Additional information




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