Mvr Mechanical Vapor Recompression Evaporator

Product Details
Customization: Available
After-sales Service: Technical Support
Warranty: One Year
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  • Mvr Mechanical Vapor Recompression Evaporator
  • Mvr Mechanical Vapor Recompression Evaporator
  • Mvr Mechanical Vapor Recompression Evaporator
  • Mvr Mechanical Vapor Recompression Evaporator
  • Mvr Mechanical Vapor Recompression Evaporator
  • Mvr Mechanical Vapor Recompression Evaporator
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Basic Info.

Model NO.
various models
Type
Waste Water Evaporation Equipment
Method
Heating Evaporation
Usage
Industrial, Waste Water Evaporation Equipment
Material1
Titanium Alloy
Material2
Stainless Steel
Height
Customization
Processing Volume
Customization
Transport Package
Film Coating
Specification
Customization
Trademark
Wanzhe Shengshi
Origin
China, Shandong, Weifang
HS Code
842121
Production Capacity
30

Packaging & Delivery

Package Size
500.00cm * 100.00cm * 300.00cm
Package Gross Weight
1000.000kg

Product Description

Mvr Mechanical Vapor Recompression EvaporatorMvr Mechanical Vapor Recompression EvaporatorMvr Mechanical Vapor Recompression EvaporatorMvr Mechanical Vapor Recompression EvaporatorMvr Mechanical Vapor Recompression EvaporatorThe full name is Mechanical Vapor Recompression Evaporator, which is an efficient and energy-saving evaporation equipment widely used in various industries such as pharmaceuticals, chemicals, and food processing.
Working principle MVR evaporator increases the energy of the secondary steam through a compressor and reuses it for heating materials, thus achieving the recycling of steam thermal energy. The specific process is as follows: Evaporation process: Materials are heated and evaporated inside the evaporator, and the produced steam is compressed by the compressor, increasing pressure and temperature. Steam compression: High-pressure steam enters the evaporator again via the compressor to act as a heat source, continuing to heat the material. Condensation and separation: The mixture of evaporated steam and material is separated through a gas-liquid separator, with the steam returning to the compressor and the material being collected.
Structure Composition The MVR evaporator mainly consists of the following parts: Evaporator body: This is where the material is concentrated, usually composed of a shell and tube heat exchanger to increase the heat transfer area. Compressor: It compresses the secondary steam, enhancing its energy for reheating the material. Gas-liquid separator: It separates the steam from the concentrated liquid, ensuring efficient operation. Control system: It monitors and adjusts parameters such as temperature and pressure in real time to ensure the equipment operates at its best condition.
Strengths and application fields
MVR evaporators have several advantages including: High efficiency and energy saving: By recycling steam thermal energy, the usage of fresh steam is reduced, significantly saving energy with cost reductions ranging from 30% to 80%. High heat transfer efficiency: The tubular heat exchanger design increases the heat transfer area, enhancing evaporation efficiency. Wide range of applications: Suitable for evaporative crystallization of various inorganic salts, evaporation of solutions with higher hardness, garbagefiltrate evaporation and concentration, concentrate of solutions in food, fermentation, and pharmaceutical industries. (Note: "filtrate" might be a mistranslation or typo from the original text, it should be "garbagefiltrate" which means "garbagefiltrate", correctly translated as "garbage leachate".) Corrected sentence: Wide range of applications: Suitable for evaporative crystallization of various inorganic salts, evaporation of solutions with higher hardness, garbage leachate evaporation and concentration, concentrate of solutions in food, fermentation, and pharmaceutical industries.

Operation Precautions and Maintenance
When operating an MVR evaporator, the following points need to be noted: Temperature control: Ensure that the material temperature is within the appropriate range to avoid overheating or overcooling. Pressure adjustment: Maintain stable system pressure to ensure the steam compression effect.

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