Engineered Thermal Control for Petrochemical Fired Equipment
Emisshield High-Emissivity Coating Systems are engineered specifically for petrochemical service and are applied to the most thermally critical surfaces within fired equipment, including:
Process Heaters
Reformers
Flares
Radiant Tubes
Heat Shields
Boilers
Refractory Linings
Ceramic Fiber Components
Customized Solutions Across Industries
Emisshield’s high-emissivity coatings optimize performance in various sectors. Explore other industry-specific applications.Emisshield Benefits in Petrochemical Furnaces
Improved Radiant Heat Efficiency
By increasing surface emissivity to 0.85–0.95, Emisshield converts refractory and metal surfaces into effective radiators. Petrochemical applications documented in the booklet show 5–12% reductions in fuel use, achieved by maintaining target process temperatures at lower firing rates through improved radiant heat transfer.
Stabilized Heat Flux and Temperature Distribution
More uniform radiant energy distribution reduces localized overheating and flame impingement. Petrochemical furnace applications report 3–5% minimum improvements in combustion chamber efficiency, with steadier temperature profiles across radiant sections and process tubes.
Reduced Tube Metal Temperatures and Extended Run Length
Improved radiant balance allows more energy to be absorbed by process tubes at lower wall temperatures. Documented applications show tube metal temperature reductions of 100–160°F, slowing coke formation and extending decoking intervals. In multiple cases, furnace run lengths increased from annual shutdowns to 30+ months of stable operation.
Extended Refractory and Ceramic Fiber Service Life
High-emissivity coatings reduce thermal gradients and thermal shock on refractory and ceramic fiber linings. Third-party testing and field data show ceramic fiber shrinkage reduced to less than 1%, compared to 5–7% in uncoated materials, supporting longer lining life and fewer unplanned repairs.
Transforming Petrochemical Performance Booklet
Looking for Documented Results? Download the Transforming Petrochemical Performance Booklet to review petrochemical case histories, third-party testing, and engineering validation. The booklet details how emissivity-driven heat redistribution improves firing control, reduces tube metal temperatures, and extends run length across fired heaters and reformers.
Take the First Step Toward More Predictable Fired Equipment Operation
Ready to apply documented emissivity performance in your fired equipment? Contact our team to discuss how Emisshield high-emissivity coating systems are engineered and applied across petrochemical heaters, reformers, flares, and other fired equipment to stabilize radiant conditions, reduce thermal stress, and support longer, more predictable operating cycles.