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John Zink Division Business Information

A flare manufacturer with over 90 years of experience, offering high-performance flares for refineries and petrochemicals, as well as burners for various heaters, furnaces, and boilers.

• Chentronics • KEU • McGill • KAIDAR • Peabody Engineering • HAMWORTHY COMBUSTION • TODD Combustion • COEN

Related Link - https://www.johnzink.com/ja

basic information

**Flare System** Low SOx and low NOx combustion technology Significantly reduces smoke and unburned gas through cutting-edge combustion control. High turndown ratio Stable combustion from low flow rates to high flow rates in emergencies. Design minimizes wind influence Compatible with air assist, steam assist, and gas assist methods. Ultra-high temperature and high durability materials Ideal for plant applications that require 24-hour operation. Thermal camera and pilot monitoring system Constant monitoring of the pilot with automatic reignition functionality. **Process Burner** Ultra-low NOx combustion Meets environmental regulations with the latest combustion methods. High-efficiency combustion design Contributes to reduced fuel consumption. Significant improvement in turndown ratio Stable operation even in equipment with large process fluctuations. Wide fuel compatibility Natural gas, off-gas, heavy oil, etc. High maintainability Easy retrofitting to existing furnaces.

Price range

Delivery Time

Applications/Examples of results

Refinery: Atmospheric/ Vacuum Distillation Furnace, Heating Furnace Chemical Plant: Process Heater, Reaction Furnace Gas Plant: Heating Furnace, Boiler, Regenerator Upgrade of Existing Equipment (Retrofit) Reduction of fuel costs through combustion improvement of aging furnaces Upgrade to ultra-low NOx burners due to strengthened exhaust gas regulations Decrease in operational troubles due to improved flame stability

Recommended products

Distributors

- Refining - Petrochemical Processing - Chemical Processing - Specialty Chemical - Gas Processing - Pharmaceutical - Alcohol/Beverage (Dealcoholization)