On-Site Steam Compressor for Special Environment 16T/H Two-Stage Pipeline Boosting System
Custom engineered steam compressor solution for new energy enterprises, featuring a 16T/H two-stage pipeline boosting system designed for specialized environmental conditions.
Technical Specifications
Inlet Conditions: 152℃ temperature, 0.3Mpa pressure
Exhaust Conditions: 182℃ temperature, 1.05Mpa pressure
Installed Power: 1250kW
Energy Efficiency: 62.5kW·h per ton of steam
Product Features
- Gear speed integrated multi-stage compressor design
- Imported guide vane pre-rotation with automatic control
- Constant back pressure with 70%~100% adjustable air volume range
- Specifically designed for process gas compression applications
- Automatic anti-surge protection system
- Compact structure for easy maintenance access
- Oil-free compressed air delivery with stable pressure and low noise
- Remote monitoring and automatic control capabilities
- Fully customizable services tailored to customer requirements
MVR Evaporator Performance Comparison
| Parameter |
Single Effect Evaporator |
Multi-Effect Evaporator |
MVR Evaporator |
| Energy Consumption |
High energy consumption (1 ton steam per 1 ton water) |
More energy-efficient with decreasing consumption per effect |
Most energy-efficient (15-50 kW·h per ton of water) |
| Floor Area |
Small |
Large |
Small |
| Product Quality Impact |
Short dwell time, high temperature, minimal impact |
Long dwell time, high temperature, minimal impact |
Short residence time, temperature difference evaporation, minimal impact |
| Energy Mode |
Steam heating requiring pipeline network and boiler |
Steam heating requiring pipeline network and boiler |
Electric only, no steam network required, fully closed circulation |
| Operating Cost |
High |
Higher |
Low |
| Stability |
Poor |
Poor |
Good |
Key Advantage: MVR evaporators represent the most energy-efficient evaporator technology available, offering significant operational cost savings while maintaining high system stability and minimal product quality impact.