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- W2376214517 abstract "An experimental test was carried out to study the NOx reduction efficiency using ammonia injection selective non-catalytic reduction (SNCR) technology. Chemical kinetics modeling was investigated simultaneously. Results show that high temperature causes oxidization of ammonia while low temperature decreases reduction efficiency. The optimal temperature range is about 850 to 110{sup o}C in our test, highest NOx reduction of about 82% is achieved. With the increase of ammonia dosage chemical reaction slows especially at low temperature. The time reaching chemical equilibrium dramatically increases when temperature is lower than 700{sup o}C. Therefore, the acceptable temperature with short time in the coal-fired boiler should be higher than 700{sup o}C. The risk of ammonia leakage is neglectable when temperature is higher than 950{sup o}C. It plays a key role in the whole reactions that competition exists between two chain-branching reactions of NH{sub 2}. Low temperature is beneficial for the first chain-branching reactions which are the DeNOx process, while the high temperature is beneficial for the second chain-branching reactions which are the ammonia oxidation process. The homogeneous numerical simulation results show good agreement with the experimental data especially at high temperature. 11 refs., 8 figs., 1 tab." @default.
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- W2376214517 date "2004-02-01" @default.
- W2376214517 modified "2023-09-27" @default.
- W2376214517 title "MODELING AND EXPERIMENTAL STUDY ON NO_x REDUCTION IN FURNACE WITH AMMONIA INJECTION" @default.
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