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Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 1
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 2
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 3
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 4
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 5
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 6
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 1
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 2
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 3
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 4
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 5
Industrial MVR Multi-effect Wastewater Heat Pump Evaporator 6

Industrial MVR Multi-effect Wastewater Heat Pump Evaporator

The Industrial MVR Multi-effect Wastewater Heat Pump Evaporator is a compact, energy‑saving system that concentrates and treats industrial wastewater by evaporating water and reusing its heat. It combines mechanical vapor recompression (MVR), multi‑effect evaporation, and a heat pump to compress and recycle vapor heat, cutting energy use and operating cost compared with conventional evaporators. The unit reduces discharge volume, recovers clean water, supports near‑zero liquid discharge (ZLD) and fits corrosive, oily, or high‑organic streams when built with proper materials.

Usage scenarios:

- Chemical, pharmaceutical, dye/textile, and plating plants for concentrating process waste and recovering water and chemicals.

- Food and beverage, sugar, brewery, and dairy factories to evaporate high‑COD/BOD wastewater and reclaim water and heat.

- Refineries, oilfields, landfill leachate treatment, and any facility aiming for zero liquid discharge or to sharply cut wastewater volume and disposal costs.

5.0
brand name:
QILEE
Shipping:
Support Sea freight
Payments:
L/C,D/A,D/P,T/T,Western Union,MoneyGram,OA
Lead Time:
1-1(pieces):60(days),>1(pieces):To be negotiated(days)
Place of Origin:
China
design customization

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    maximum working pressure
    8000
    Refrigerant
    R-410A
    Temperature(℃)
    38
    Vacuum(Pa)
    8000
    Electric consumption(KW/L)
    0.25
    Evaporation capacity(L/h)
    10
    Weight (KG)
    1
    Material
    Stainless Steel
    dimension(l*w*h)
    Customized
    voltage
    Customized
    Product name
    Heat Pump Evaporator
    warranty
    1 Year
    place of origin
    Shanghai, China

    Energy-efficient Compact Rugged Skid-mounted 

    The Industrial MVR Multi-effect Wastewater Heat Pump Evaporator delivers up to 90% energy savings and ultra-low-temperature vacuum evaporation as a compact, fully automatic Sewage Treatment Equipment solution ideal for heat‑sensitive, small-to-medium operations. Premium German core components assembled in China, modular compact styling and corrosion‑resistant construction provide high quality, low-maintenance performance and long service life. Shipped in standard export carton packing with a 3–20 day lead time, the unit arrives ready for quick assembly and lowers total facility costs by operating on electricity alone.

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    Here are five four-word subtitles, each from the requested perspective:

    The Industrial MVR Multi-effect Wastewater Heat Pump Evaporator is a compact, modular Sewage Treatment Equipment that integrates mechanical vapor recompression and multi-effect heat pump evaporation to enable ultra-low-temperature vacuum processing for heat-sensitive and corrosive waste streams. It concentrates and recovers wastewater with very high thermal efficiency—reducing energy consumption by up to 90% versus conventional evaporators—while providing heat recovery, minimal cooling-water demand, fully automatic control, and low O&M costs. Assembled from advanced core components with corrosion-resistant materials and a small footprint, the system offers easy installation, high reliability, and is tailored for small-to-medium industrial plants requiring efficient water reclamation, crystallization and drying.

    High Efficiency MVR Evaporator 

    The Industrial MVR Multi-effect Wastewater Heat Pump Evaporator is an advanced, compact Sewage Treatment Equipment that uses heat pump compression and high vacuum to enable low-temperature evaporation for heat-sensitive materials. With modular design and fully automatic control, it can save up to 90% of energy versus traditional evaporation methods while minimizing cooling water and auxiliary facility needs. Ideal for small and medium-sized enterprises across pharmaceuticals, chemicals, food and electroplating industries, the unit provides efficient, environmentally friendly wastewater concentration and low-cost operation and maintenance.


    ◎ High Energy Efficiency 

    ◎ Compact Modular Footprint

    ◎ Ultra Low Temperature

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    Efficient Reliable High-Recovery Evaporation

    Built by a specialist thermal-engineering team, the Industrial MVR Multi-effect Wastewater Heat Pump Evaporator is designed for robust thermal recovery and reliable performance in Sewage Treatment Equipment. It merges mechanical vapor recompression, multi-effect evaporation and heat pump technology to drastically reduce energy use, concentrate wastewater efficiently, and provide corrosion-resistant materials with smart automated controls. Key advantages include a compact, modular design for easy maintenance, high thermal efficiency and scalable capacity, lower operating costs and emissions, and rapid return on investment.

    Material introduction

    The evaporator’s wet-contact parts are fabricated from high-grade corrosion-resistant alloys—primarily 316L stainless steel with options for titanium or nickel-based alloys for highly aggressive streams—while heat-exchange surfaces use precision-welded plate and tube constructions for durable, hygienic performance. German-designed MVR compressor cores are integrated with PTFE-lined valves, vacuum-tight seals and industrial-grade bearings to support ultra-low temperature vacuum evaporation and long-term reliability. Mounted on a compact skid with epoxy-coated carbon-steel framing and PTFE/EPDM gaskets, the unit is tailored for Sewage Treatment Equipment applications where corrosion resistance, low maintenance and energy-efficient operation are essential.


    ◎ Standard Stainless 

    ◎ Corrosion‑Resistant Option

    ◎ Heavy‑Duty MVR Variant

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    FAQ

    1
    What is an Industrial MVR Multi-effect Wastewater Heat Pump Evaporator and how does it work?
    It is a thermal concentration system that combines mechanical vapor recompression (MVR), multiple-effect evaporation, and heat-pump heat recovery to remove water from industrial wastewater. Wastewater is heated and partially evaporated; the produced vapor is compressed (MVR) or recycled through multiple effects so its latent heat is reused to evaporate more water. The integrated heat pump/heat recovery increases temperature lift and overall energy efficiency. The result is concentrated brine/sludge and condensate that can often be reused, while drastically reducing liquid discharge volume.
    2
    In which industries and application scenarios is this technology typically used?
    It’s used where wastewater volume reduction, resource recovery, or zero liquid discharge (ZLD) are required. Typical sectors include textiles and dyeing, chemical and pharmaceutical manufacturing, food and beverage (dairy, sugar, distillery), pulp and paper, electroplating and metal finishing, landfill leachate, oil & gas and petrochemical, and semiconductor fabs. Common scenarios: concentrating high-COD/BOD streams, reducing salt-laden effluents, recovering potable-quality condensate, and preparing brines for crystallization or safe disposal.
    3
    What types of wastewater can it treat, and are there limitations?
    It treats aqueous streams with dissolved salts, organic load, and moderate suspended solids. Best suited for wastewaters where volume reduction or ZLD is prioritized. Limitations: very high scaling or fouling streams (high silica, calcium sulfate, calcium carbonate) require robust pretreatment or anti-scaling strategies; extremely viscous feeds, heavy solids, or slurries may need thickening or solids separation first. Corrosive or highly oxidizing streams require appropriate construction materials (e.g., SS316L, duplex, titanium, coatings). Pre-treatment (screening, filtration, pH adjustment, anti-scaling dosing) is often necessary for reliable long-term operation.
    4
    How energy-efficient is an MVR multi-effect evaporator compared with conventional evaporation methods?
    It’s significantly more efficient. By recompressing vapor and using multiple effects and heat recovery, electrical specific energy consumption is typically a fraction of that for steam-driven single-effect evaporators. In practice this can mean energy savings on the order of 50–80% compared with conventional direct-steam or single-effect systems, depending on feed characteristics and operating design. Exact savings depend on factors such as number of effects, compressor efficiency, feed temperature, and pre-treatment needs.
    5
    What are the typical installation and operational requirements?
    Installation requires an electrical supply sized for the compressor and pumps, feed and concentrate handling piping, condensate collection and reuse systems, and adequate space for the evaporator skid and auxiliary equipment. A reliable power source and control system are important. Operators should have basic training in process monitoring, anti-scaling dosing, and routine mechanical checks. Site utilities may also include steam for start-up, compressed air for controls, and access to chemicals for cleaning and pretreatment. Noise and vibration from the compressor should be considered in plant layout.
    6
    What maintenance, troubleshooting, and lifecycle considerations should users expect?
    Routine maintenance includes inspection and service of the MVR compressor (bearings, seals), pumps, heat exchanger/tube bundle cleaning (CIP), monitoring and control calibration, and chemical dosing systems. Common issues are scaling/fouling, compressor wear, and leaks—preventable with proper pretreatment, softening/dosing, and scheduled cleaning. With good operating practices and corrosion-appropriate materials, service life of major components is typically many years (often 10–20+ years for heat exchangers and structural parts), though compressors and rotating equipment will need periodic overhaul. Safety, emissions, and discharge regulations should be reviewed to ensure compliance with local authorities.
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