Leave Your Message

China Suppliers MVR Evaporation Plant Factory: Energy-Efficient Mechanical Vapor Recompression Systems

,

Discover the advantages of Mechanical Vapor Recompression (MVR) plants, where China stands out as a leading supplier in the industry. These innovative systems utilize electricity to compress vapors, allowing for their reuse as a heating medium, which results in remarkable operational savings. MVR technology is characterized by low energy consumption and the ability to achieve gentle, low-temperature evaporation, making it a flexible solution for various applications. Our state-of-the-art factory produces MVR systems that are ideal for industries such as food processing, chemical manufacturing, and wastewater treatment, ensuring high efficiency and reliability for your operations.

,

    Description

    MVR Evaporation plant delivers substantial operational cost savings in areas with an ample supply of low-cost electrical energy.

    Once an MVR evaporation plant is running, little or no additional steam is required. In the MVR evaporation plant, a centrifugal fan is used to recompress the vapour to a higher pressure, resulting in a temperature rise. This means that the recompressed vapour can be used as the evaporation plant heating medium, while the condensate is ideal for preheating of the feed product.

    For low boiling point increases, a single-stage compressor can be used to fulfill the requirements of the design.

    For high boiling point increases, we will provide two designs: multiple-stage compressors, single stage compressors combined with multiple-effect.

    The MVR evaporation plant almost doesn't use steam, but electric energy is required as the main energy source.

    Key Note on Power Consumption

    The power consumption of the main motor of MVR is due to the heat exchange area and the evaporating temperature of the evaporation plant. The heat exchange area is bigger, and as a result, power consumption is lower, but the investment in equipment is increased.

    Evaporating temperature is higher → power consumption is lower, but fouling in the calandria is increased.
    Evaporating temperature is lower → power consumption is higher.

    MVR can be powered by an electric motor. The rotary speed of an MVR can be controlled by a frequency converter, and the rotary speed of an MVR may control the evaporation rate and final concentration of the MVR evaporation plant.

    MVR Evaporation Plant Detail (1)
    MVR Evaporation Plant Detail (2)
    MVR Evaporation Plant Detail (3)

    Particular Feature

    Low specific energy consumption.

    Gentle evaporation of the product due to low temperature differences.

    Largely increases product quality and decreases fouling.

    Short residence times of the product.

    As a single-effect system is most often used.

    Only a small area condenser, requiring little cooling water.

    High availability of the plants due to the simplicity of the process.

    Excellent partial load behaviour.

    Low specific operating costs.

    MVR Evaporation Plant Detail (4)

    Fields of Application

    Particularly suited for the food and beverages industry (evaporation of milk, whey, sugar solutions), chemical industry (evaporation of aqueous solutions), the salt works industry (evaporation of saline solutions), and environmental protection technology (concentration of waste water).

    MVR Evaporation Plant Compared with a Normal Multiple-effect Evaporation Plant

    Type Multiple-effect evaporation plant / TVR evaporation plant MVR evaporation plant
    Energy sources Steam Electric power
    Energy consumption of concentrating water of 1 ton, per hour 0.16–0.6T 18–26Kw
    For Example

    Evaporation rate: 50T/h

    Unit price of steam: 160 RMB/T

    Unit price of electric power: 0.8 RMB/Kw

    Operating hours: 8,000 hours per annum

    Type 4-effect evaporation plant MVR evaporation plant
    Energy consumption Steam: 11T/h Electric power: 1000Kw/h
    Expense of energy consumption, per annum 14,080,000 RMB 6,400,000 RMB
    Economizing expense, per annum Zero 7,680,000 RMB
    System Component Legend

    1. Evaporator

    2. Condenser

    3. Plate heat exchanger

    4. MVR

    5. Condensate Tank

    A. Liquor    B. Product

    C. Condensate    D. Fresh steam

    E. Cooling water    F. Deaeration

    MVR Evaporation Plant Detail (5)

    Type Selection Criteria for Evaporation Plants

    When we design evaporation plants, various requirements must be considered. These determine the type of design, arrangement, the resulting process, the cost of investments, and running expenses.

    The most important requirements:

    Capacity and Operation Data
    Name of Product
    Feeding concentration (dry materials %)
    Feeding temperature
    Final concentration (dry materials %)
    Evaporation rate (T/h)
    If crystallization, requirement of crystals
    Requirement of controlling, automatization
    Product Properties
    Product properties
    Viscosity and flow properties
    Tendency of foaming
    Fouling and precipitation
    Boiling Point
    Utility Requirements
    Steam pressure / temperature
    Temperature of cooling water feeding
    Voltage / frequency
    Unit price of steam (RMB/T)
    Unit price of electric power (RMB/Kw)
    Waste Heat Parameter
    Waste vapour rate from dryer
    Wet bulb temperature of waste vapour from dryer
    Condensate rate from dryer
    Condensate temperature from dryer
    Liquefaction vapour rate
    Liquefaction vapour temperature
    Others
    Selection of Materials
    Material of heating pipe
    Material of tube plate
    Material of contacting with liquor
    Material of contacting with secondary steam
    Requirement of surface finish
    Energy Efficiency of Evaporation Plants
    Multiple-effect evaporation plant
    TVR evaporation plant
    MVR evaporation plant
    Waste heat evaporation plant

    Frequently Asked Questions

    What is an MVR Evaporation Plant and how does it work?
    An MVR (Mechanical Vapor Recompression) Evaporation Plant uses a centrifugal fan to recompress the secondary vapour generated during evaporation to a higher pressure, which raises its temperature. This recompressed vapour is then recycled as the heating medium for the evaporator, drastically reducing or eliminating the need for external steam. The system is primarily powered by electricity, making it highly energy-efficient in regions with low electricity costs.
    What are the main advantages of MVR evaporation over traditional multiple-effect evaporation?
    The primary advantage is significantly lower energy costs — an MVR plant uses electric power instead of steam, and a real-world example shows annual savings of up to 7,680,000 RMB compared to a 4-effect evaporation plant at the same evaporation rate. Additional benefits include low specific energy consumption, gentle product treatment at low temperature differences, shorter product residence times, high plant availability, and excellent partial load behaviour.
    In which industries is the MVR Evaporation Plant most commonly applied?
    The MVR Evaporation Plant is particularly well-suited for the food and beverages industry (e.g., evaporation of milk, whey, and sugar solutions), the chemical industry (evaporation of aqueous solutions), the salt works industry (evaporation of saline solutions), and environmental protection technology (concentration of wastewater).
    How does the boiling point rise affect the design of an MVR system?
    For products with a low boiling point rise, a single-stage compressor is typically sufficient to meet design requirements. For products with a high boiling point rise, two design approaches are available: multiple-stage compressors, or a single-stage compressor combined with a multiple-effect configuration. The appropriate design is selected based on the specific product characteristics and energy efficiency targets.
    What factors influence the power consumption of an MVR evaporation plant?
    Power consumption in an MVR system is primarily influenced by two factors: the heat exchange area and the evaporating temperature. A larger heat exchange area results in lower power consumption but increases equipment investment. A higher evaporating temperature also reduces power consumption but may increase fouling in the calandria. A lower evaporating temperature leads to higher power consumption. Balancing these factors is key to optimizing both energy efficiency and equipment cost.
    What information is needed to select the right type of evaporation plant?
    Selecting the correct evaporation plant requires comprehensive data including: capacity and operation data (product name, feeding and final concentration, evaporation rate), product properties (viscosity, foaming tendency, fouling, boiling point), utility requirements (steam pressure, cooling water temperature, voltage/frequency, energy unit prices), waste heat parameters (vapour and condensate data from dryers), material selection requirements, and an assessment of energy efficiency options such as multiple-effect, TVR, MVR, or waste heat evaporation systems.