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Stainless Steel Jacketed Reactor

SS Reactor Jacketed Vessel

ARVINDA INDUSTRIES is the prominent manufacturer of various types of Pressure Reactor Vessel. we make Pressure reactor vessel from 100 liter to 20000 Liter working capacities according to customer's requirement and product characteristics. These vessels are specifically designed to handle various processes such as mixing, blending, heating, and cooling. Their robust construction and versatility make them ideal for applications in pharmaceuticals, chemicals, food and beverage, and petrochemicals.

What is Jacketed Reactor Vessel?

A Jacketed Reactor Vessel is a type of chemical reactor that features an external shell, known as a jacket, surrounding the main vessel body. This jacket serves as a space for heating or cooling fluids to circulate, which in turn helps to control and regulate the temperature of the reaction occurring inside the vessel. Jacketed Reactor Vessels are commonly used in industries such as pharmaceuticals, chemicals, petrochemicals, and food processing, where precise temperature control is essential for the desired reaction outcomes.
A Jacketed Reactor made of stainless steel is an essential piece of machinery used in many industrial operations where temperature control is critical. The excellent heat transmission mechanism of these reactors guarantees that the materials within are kept at the ideal temperatures for chemical reactions, mixing, and processing. Reactors like these are essential to the daily operations of many industries, including petrochemicals, food and beverage, chemicals, and medicines.

Key features and components of a Jacketed Reactor Vessel:

  • Main Vessel Body: This is where the chemical reaction takes place. It can be cylindrical, spherical, or another shape based on the specific requirements of the reaction.

  • Jacket: The jacket is an outer shell that surrounds the main vessel. It's usually made of the same material as the main vessel and creates a space between itself and the vessel's interior.

  • Heating and Cooling Fluids: The jacket is designed to allow heating or cooling fluids, such as steam, hot water, chilled water, or thermal oil, to circulate around the main vessel. This helps control the temperature of the reaction by transferring heat to or from the reaction mixture.

  • Jacket Connections: Inlet and outlet connections on the jacket allow the circulation of heating or cooling fluids. These connections are typically equipped with valves to control the flow of fluids.

  • Agitation System: Many jacketed reactor vessels include an agitation system, such as impellers or stirrers, to ensure uniform mixing of reactants and efficient heat transfer.

  • Insulation: To minimize heat loss or gain from the surroundings, insulation is often applied to the outer surface of the jacket.

  • Pressure Control: Some jacketed reactor vessels have pressure control systems to ensure that the pressure inside the jacket remains within safe limits.

  • Instrumentation and Controls: Temperature sensors, pressure gauges, and other instrumentation are often used to monitor and control the temperature and pressure within the vessel and the jacket.

Advantages of Jacketed Reactor Vessels:

  • Precise Temperature Control: Jacketed reactors provide precise control over the temperature of the reaction, ensuring optimal reaction rates and product quality.

  • Flexible Heating and Cooling: The ability to circulate heating and cooling fluids in the jacket allows for flexibility in adjusting reaction conditions.

  • Heat Transfer Efficiency: The large surface area provided by the jacket facilitates efficient heat transfer between the heating or cooling fluid and the reaction mixture.

  • Maintaining Sensitive Reactions: Jacketed reactors are ideal for reactions that are sensitive to temperature changes and require a controlled environment.

  • Safety: Temperature-sensitive reactions can be safely conducted in a controlled manner, reducing the risk of runaway reactions or undesirable side reactions.

  • Jacketed Reactor Vessels are versatile tools used for a wide range of chemical reactions, from small-scale laboratory processes to large-scale industrial production. They are valued for their ability to ensure consistent and controlled reaction conditions, resulting in high-quality products and efficient processes.


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