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News & Insights
Stay informed with the latest updates, our articles and expert perspectives.
Explore Sulzer’s latest news, industry insights. Discover innovations, project highlights, and expert commentary designed to keep you ahead in a rapidly evolving market.


Boosting Plant Profitability and Sustainability with 95+™ Heater Technology
Introduction In the race to decarbonize and optimize industrial operations, fired heaters and furnaces are often the largest contributors...
2 min read


Retrofit or New Build: The Flexibility of 95+™ Heater Technology
Introduction Industrial operators are under increasing pressure to decarbonize and improve efficiency, whether upgrading existing fired heaters or designing new grassroots units. Sulzer’s 95+™ Heater Technology offers unmatched flexibility, enabling both revamps and new builds to achieve industry-leading thermal efficiency of ≥95%. With more than 25 successful references worldwide, this system-wide process solution is redefining what’s possible for fired heaters and furnaces
2 min read


Achieving Ultra-Low Emissions: 95+™ Heater Technology for CO₂, SOₓ, and NOₓ Reduction
Introduction Industrial decarbonization is a top priority for refineries and chemical plants worldwide. Fired heaters are among the...
2 min read


How 95+™ Heater Technology Eliminates Sulfur Dew Point Corrosion
Introduction Sulfur dew point corrosion is a major challenge that limits the efficiency and lifespan of traditional fired heaters and...
3 min read


95+™ Heater Technology: Redefining Fired Heater Efficiency for Decarbonization
Introduction Decarbonizing fired heaters and furnaces is a critical step toward achieving sustainability goals in the refining, petrochemical, and chemical industries. Traditional fired heaters typically operate at thermal efficiencies capped between 89% and 92% at best, limited sulfur dew point corrosion and fouling. Sulzer’s patented 95+™ Heater Technology breaks through these barriers, delivering unparalleled heating efficiency of 95% or higher. This breakthrough not only
2 min read
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