Steam Super HeatersProducts / Heating System
Steam Super Heater
Advanced electric heating solutions for power generation and industrial steam applications.
Steam Super Heater is a heat exchanger used in Power Generation Plants, Refineries, Chemical Processing Plants, Paper and Pulp Industries.
MOWE provides engineered steam superheating solutions designed to convert saturated steam into high-temperature superheated steam for improved process efficiency, reliability and operational performance.
Super Heater for Power Stations
Converting saturated steam into high-energy superheated steam.
A Steam Super Heater is a heat exchanger device used to convert saturated steam or wet steam into superheated steam or dry steam. Superheated steam increases the plant's capacity since each unit of steam contains a higher energy content compared with saturated steam.
Higher Energy Content
Superheated steam contains higher energy content, supporting improved plant performance and efficiency.
Reduced Condensation
Helps reduce condensation in steam lines and reduces steam consumption.
Turbine Protection
Ensures dry steam enters the turbine, reducing erosion of turbine blades.
Optimised Equipment Size
Can reduce the size requirements of boilers, turbines and connecting piping.
Illustrates MOWE Steam Super Heaters
Compact & Integrated System Design
Reliable steam superheating with precise process control.
MOWE Steam Super Heaters are designed to achieve high steam temperatures even at low process pressure. The compact system design and integrated control concept provide short response times, high control precision and high availability.
Our steam super heaters can be supplied as complete stand-alone systems, fully assembled with the necessary heating elements, safety devices, instrumentation and control systems.
Compact Design
Space-efficient configuration suitable for industrial and power generation facilities.
Fast Response
Short response times for effective temperature adjustment and process control.
Precise Control
High temperature consistency through integrated control and monitoring systems.
High Availability
Reliable system operation with integrated safety devices and available redundancy options.
Areas of Application
Designed for demanding power generation and industrial processes.
Boiler Systems
Used in boiler systems to produce high-temperature superheated steam.
Heat Recovery Systems
Supports heat recovery applications by efficiently converting recovered energy into heat.
Cogeneration Systems
Supports combined heat and power systems for efficient steam production.
Industrial Processes
Suitable for refinery, chemical processing, paper and pulp industrial applications.
Functional Principle
Controlled electric heating for consistent steam temperature.
In a Steam Super Heater, saturated steam is indirectly superheated using electrical tubular heating elements. The desired steam temperature is used as the primary control variable.
Where process throughput varies significantly, the flow signal can also be integrated into the control concept. This allows the heating capacity to be optimally adapted to process conditions while helping to prevent overheating.
Steam Inlet
Saturated steam enters the superheating system.
Electric Heating
Electrical tubular heaters transfer thermal energy.
Temperature Control
The control system regulates heating output.
Superheated Steam
High-temperature dry steam is delivered to the process.
System Advantages
Engineered for efficiency, safety and reliable operation.
Suitable for use in explosive atmospheres.
Large operating range and high energy density.
High efficiency with electrical energy converted into heat.
High operating safety.
Simple control concept and high temperature consistency.
Flexible material selection according to project requirements.
Easy installation, mounting and commissioning.
No local emission sources.
Low investment cost and reliable long-term operation.
Technical Information
Download additional technical documentation.
Heaters for Refinery – Routine Maintenance Test, Insulation and Hipot

