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 STM reciprocating grate furnace technology 
                                    has been proven for many years as most effective
 For the combustion of waste materials in the 
                                    pulp, waste treatment, and board industries. 
                                    Many years of trouble-free operation can be 
                                    Expected from the STM reciprocating grate 
                                    technology with minimal downtime.
 
 The walking floor movement pushes fuel along 
                                    a large grate area through distinct drying, 
                                    gasification, and combustion and burnout zones.
 Ash drops off the grate end into an ash handling 
                                    dry or wet system for continuous, completely 
                                    automatic ash removal.
 Features 
                                    of the STM reciprocating grate:  
                                    Handles 
                                      wide range of feed materials including low 
                                      heat value, high moisture, high ash.
Can 
                                      handle bulky and irregularly sized wastes
Conservative 
                                      sizing for assured capacity.
Heavy-duty 
                                      design for long life and reliable operation.
High 
                                      temperatur service air-cooled grate bars 
                                      for long grate bar life.
Completely 
                                      automatic ash and slag removal by reciprocating 
                                      action of grates.
Multiple 
                                      Zones of Primary underfire air for optimum 
                                      temperature distribution,completely burn 
                                      out, and low emissions.
Low 
                                      CO and VOC emissions through the use of 
                                      high velocity secondary air injection and 
                                      flue gas re-irculation for turbulence and 
                                      good mixing, and heat recovery.
Low 
                                      NOx emissions using flue gas re-circulation
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