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| Categories | MVR Evaporator | 
|---|---|
| Brand Name: | HANPU | 
| Model Number: | MVR | 
| Certification: | CE,ISO9001 | 
| Place of Origin: | Jiangsu,China | 
| MOQ: | 1 set | 
| Price: | 200,000USD~20,000,000USD | 
| Payment Terms: | L/C,D/A,D/P,T/T,Western Union | 
| Supply Ability: | 1 Set/3 months | 
| Delivery Time: | 3 months | 
| Packaging Details: | Package with strong strap | 
| Company Info. | 
| Jiangsu Hanpu Mechanical Technology Co., Ltd | 
| Verified Supplier | 
| View Contact Details | 
| Product List | 

Engineer-to-order tubular (shell-and-tube) MVR evaporator with a forced-circulation loop for high-salinity, viscous, and solids-bearing feeds. Mechanical Vapor Recompression (MVR) recycles latent heat as the primary duty, delivering low OPEX, robust heat transfer, and stable 24/7 operation for chemical, food, and environmental services.
Secondary vapor is mechanically compressed to elevate saturation temperature and reused as the heating medium. The forced-circulation loop provides high shear at tube walls, protecting heat-transfer coefficients across variable chemistry and viscosity while keeping specific energy low.
Wetted parts in SS316L/duplex; titanium/Hastelloy options for chloride or aggressive feeds. Drainable layouts, removable channel heads, CIP skid, and antiscalant dosing extend campaign length.

| Parameter | Typical Range* | 
|---|---|
| Operation | Continuous, vacuum duty | 
| Electric use (MVR) | ~15–40 kWh per ton of water evaporated (duty/CR dependent) | 
| Shell pressure | ~6–25 kPa(abs), feed/ΔT dependent | 
| Turndown | 50–100% with stable ΔT and quality | 
| Materials | SS316L / duplex; Ti/Hastelloy on request | 
*Performance depends on feed salinity/viscosity, fouling tendency, compression ratio, and exchanger design.
For scaling, particulates, or erosion risk, tubular exchangers provide higher robustness and allow mechanical cleaning.
Yes—commonly paired with RO/NF upstream and crystallization/solids handling downstream.
Optimized ΔT/LMTD and velocity, antiscalant dosing, scheduled CIP, and corrosion-appropriate materials (e.g., Ti for chlorides).

                                 
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