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REACTION VESSEL

Reaction Vessel

Reaction vessel is made according to customer’s specific requirements in different sizes, shapes, with / without jackets, various types of agitators, with limpet coils. They are designed and fabricated to match the optimum process conditions of temperature and pressure with efficient mixing application.

Reaction vessels are widely used in liquid formulation, solid liquid mixing in Chemical, Food, Pharma & Paints Industries.

A reaction vessel is a container used in chemistry to carry out chemical reactions. It can be made of various materials such as glass, metal, or plastic, and its size and shape can vary depending on the specific reaction being performed.

Reaction vessels can be used for a wide range of chemical reactions, from small-scale experiments in a laboratory to large-scale industrial processes. They are designed to withstand the conditions required for the reaction, such as high temperatures, pressure, and corrosive or reactive chemicals.

Reaction vessels can also have various features, such as stirring mechanisms, temperature control systems, and ports for adding or removing substances. These features help to ensure that the reaction is carried out safely and efficiently, and that the desired products are obtained.

Reaction vessels are containers used in the chemical industry for carrying out various chemical reactions, such as synthesis, extraction, and purification processes. These vessels are typically made of glass or stainless steel and can vary in size from small-scale laboratory vessels to large-scale industrial vessels.

Some common applications of reaction vessels include:

  1. Chemical synthesis: Reaction vessels are used in chemical synthesis processes to carry out reactions that produce new chemical compounds.

  2. Pharmaceutical manufacturing: Reaction vessels are commonly used in the pharmaceutical industry for the production of drugs and other medicinal products.

  3. Polymerization reactions: Reaction vessels are used in polymerization reactions, where small molecules are chemically linked together to form large molecules, such as plastics.

  4. Fermentation: Reaction vessels are used in fermentation processes to produce biofuels, enzymes, and other bioproducts.

  5. Extraction and purification: Reaction vessels are also used for extraction and purification processes, such as the separation of different compounds from a mixture.

Overall, reaction vessels are critical components in the chemical industry, enabling the production of a wide range of products that are used in various applications.

A technical chart of a reaction vessel typically includes the following information:

  1. Material of construction: The chart indicates the type of material used to construct the vessel, which may be stainless steel, glass, or other materials.
  2. Working capacity: This refers to the maximum volume of material that the vessel can hold during operation.
  3. Pressure rating: The chart specifies the maximum pressure that the vessel can withstand without experiencing failure or damage.
  4. Temperature rating: The chart indicates the maximum and minimum temperature range that the vessel can operate within.
  5. Agitation type: The chart specifies the type of agitation used in the vessel, which may be mechanical, magnetic, or other types.
  6. Agitation speed: This refers to the maximum speed at which the agitation can operate.
  7. Heating and cooling method: The chart specifies the heating and cooling method used in the vessel, which may be through a jacket, coils, or other methods.
  8. Inlet and outlet connections: The chart indicates the number, size, and type of inlet and outlet connections for the vessel.
  9. Accessories: The chart may include information about any accessories that come with the vessel, such as pressure gauges, temperature probes, or level sensors.

Overall, the technical chart of a reaction vessel provides important information about the vessel’s capabilities, limitations, and specifications, helping users choose the right vessel for their particular application.

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