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- W2016706094 abstract "Experiments with a test rig on the formation of NOx and N2O and their reduction in pressurized fluidized-bed combustion of bituminous coal are reported. The emission of NOx is controlled by two NO reduction methods—ammonia injection and staging of combustion air—and the emission of N2O by increasing the combustion temperature. Both ammonia injection and staging of combustion air are effective in NO reduction. The emission of NOx decreases with increasing ammonia flow, and ∼75–85% NOx reduction can be achieved at an NH3NOx molar ratio of 4–5. However, ammonia injection increases N2O emission and ammonia slip occurs. In the staging of combustion air a maximum NO reduction of 75% can be achieved with primary air ratio ≈ 1. A further decrease in primary air ratio to sub-stoichiometric conditions leads to an increase in NOx concentration, and has other negative effects on sulfur capture and combustion performance. No great change in N2O emission is observed when air staging is changed. Increasing combustion temperature reduces N2O emission significantly. Extremely low N2O concentrations are obtained at high bed temperature and pressure. Freeboard temperature profile also plays an important role in N2O emission." @default.
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- W2016706094 title "Control of NOx and N2O in pressurized fluidized-bed combustion" @default.
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- W2016706094 doi "https://doi.org/10.1016/0016-2361(95)93462-m" @default.
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