Chloric strong oxidant enhanced wet combined urea desulfurizing and denitrifying process
A desulfurization and denitrification, strong oxidant technology, applied in the field of wet combined desulfurization and denitrification process, can solve the problems such as difficult to achieve high nitrogen oxide removal efficiency, and achieve the effect of simple structure, high oxidation degree and convenient operation
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Embodiment 1
[0021] Prepare an absorption solution containing 5% urea, add 0.2% sodium chlorite to the absorption solution as a highly active mixed absorption solution for combined desulfurization and denitrification, and fully contact the flue gas entering it in the bubble reactor, and the flue gas NOx, SO in 2 A chemical reaction occurs leading to harmless products. The test results of the exhausted flue gas show that the nitrogen oxide removal efficiency of 75% to 96% and the desulfurization efficiency of more than 95% can be achieved.
Embodiment 2
[0023] Prepare an absorption solution containing 15% urea, add 0.01% sodium chlorite to the absorption solution as a highly active mixed absorption solution for combined desulfurization and denitrification, and fully contact the flue gas entering it in the bubble reactor, and the flue gas NOx, SO in 2 A chemical reaction occurs leading to harmless products. The test results of the exhausted flue gas show that the nitrogen oxide removal efficiency of 79% to 97% and the desulfurization efficiency of more than 95% can be achieved.
Embodiment 3
[0025] Prepare an absorption liquid containing 25% urea, add 1% sodium chlorite to the absorption liquid, as a highly active mixed absorption liquid for combined desulfurization and denitrification, fully contact with the flue gas entering it in the bubble reactor, and the flue gas NOx, SO in 2 A chemical reaction occurs leading to harmless products. The test results of the exhausted flue gas show that the nitrogen oxide removal efficiency of 90% to 95% and the desulfurization efficiency of more than 95% can be achieved.
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