Integrated Into Boiler and HRSG Systems

Emisshield high-emissivity coatings are engineered for the operating demands common in power generation environments. Chase Nedrow’s certified installation teams apply coatings to existing refractory, ceramic fiber, and metal surfaces where radiant heat transfer and substrate protection directly influence boiler stability, heat-rate consistency, and long-term reliability.

Proven Results

Emisshield high-emissivity coatings have been evaluated through field use and third-party testing in power generation service, with documented applications showing improved radiant heat utilization, more uniform internal temperature profiles, and enhanced protection of refractory and tube surfaces operating under thermal cycling across boilers, HRSG units, biomass systems, and thermal oxidizers, supporting reliable output and extended maintenance planning.
  • HRSG furnace walls and tube harps
  • Power plant boiler tubes and refractory linings
  • Burner tiles and burner throat regions
  • Transition duct refractory
  • Combustion chambers
  • RTO chambers and heat recovery units
  • Ceramic fiber systems
  • High-temperature metal surfaces within hot gas paths

Customized Solutions Across Industries

Emisshield’s high-emissivity coatings optimize performance in various sectors. Explore other industry-specific applications.

Enhance Thermal Efficiency. Support Reliable Output.

Uniform Temperature Distribution
Uniform Temperature Distribution

Promotes balanced radiant heat across boiler walls, tubes, and fiber linings.

Reduced Thermal Stress
Reduced Thermal Stress

Helps limit temperature gradients on refractory and metal components.

Extended Maintenance Intervals
Extended Maintenance Intervals

Durable coated surfaces support longer planned service cycles.

Optimized Heat Utilization
Optimized Heat Utilization

Improved absorption and re-radiation support target output at lower firing intensity.

Stable Power Output
Stable Power Output

Consistent internal temperatures support smooth operation during load changes.