PentoMag, PentoMuls additives, Flue Gas Conditioning systems
PENTOL develops and supplies advanced technologies for combustion optimization, emission reduction, and power plant efficiency improvement. With more than 50 years of experience, our solutions are used worldwide in coal-fired power plants, heavy fuel oil boilers, industrial boilers, CHP plants, steelworks, cement plants, refineries, and other combustion processes. Our engineering services include system design, commissioning, performance optimization, process diagnostics, and long-term technical support.''
PentoMag' Fuel Additives
PentoMag' is a range of combustion additives designed to improve fuel quality and boiler performance. The additives reduce slagging, fouling, corrosion, and high-temperature deposits while improving heat transfer and combustion efficiency. Depending on the application, PentoMag' helps lower fuel consumption, reduce maintenance requirements, extend equipment lifetime, and decrease emissions such as particulate matter, CO, and unburned carbon. Formulations are available for coal, heavy fuel oil, diesel engines, gas turbines, FCC units, cement plants, biomass, and waste-to-energy applications.'
PentoMuls' Water-in-Oil Technology
PentoMuls' is an advanced water-in-oil emulsion technology for heavy fuel oil combustion. By creating a stable fuel emulsion, it improves fuel atomization, promotes more complete combustion, reduces soot formation, and minimizes carbon deposits. The technology increases boiler efficiency, lowers maintenance costs, and contributes to reduced emissions while enabling more reliable operation with challenging fuel qualities.'
Flue Gas Conditioning (FGC)
PENTOL's SO? Flue Gas Conditioning systems improve the collection efficiency of electrostatic precipitators (ESPs) by optimizing fly ash resistivity through controlled sulfur trioxide injection. This allows existing ESPs to achieve significantly lower particulate emissions without costly structural modifications. Additional benefits include improved operational flexibility with varying coal qualities, reduced dust loading to downstream flue gas desulfurization systems, improved gypsum quality, lower maintenance requirements, and reduced overall operating costs. The fully automated systems integrate with plant control systems and have been successfully implemented in numerous power plants worldwide.'

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