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Stationary fossil fuel combustion units such as electrical utility boilers,
industrial boilers, process heaters, gas turbines, and reciprocating internal combustion engines. In addition,SCR has been applied to nitric acid plants.
4:Achievable Emission :
SCR is capable of NOx reduction efficiencies in the range of
85% to 95% . Higher reductions are possible but generally are not cost-effective.
5:Advantages:
Higher NOx reductions than low-NOx burners and Selective Non-Catalytic Reduction (SNCR)
Applicable to sources with low NOx concentrations Reactions occur within a lower and
broader temperature range than SNCR.Does not require modifications to the
combustion unit
6:Reaction:
4NO+4NH3+O2→4N2+6H2O 2NO2+4NH3+O2→3N2+6H2O
7:Technical Data:
vDimension: width:150mm×150mm,length from 300~1350mm;
vwarp pressure resistance bigger than 0.8Mpa,weft pressure resistance bigger

vSO2/SO3 reduction less than 0.9%;
vDeNox efficiance more than 92%;
vNH3 escape rate within 2ppm;
vMechanical longivity can be as long as 9 years
8: How does it react:
9: 2 Designs for the place of SRC catalyst: 





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