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Denitration of the gas-fired boiler flue gas based on chemical-looping combustion

机译:基于化学循环燃烧的燃气锅炉烟气的脱硝

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The denitration performances of transition metal oxide oxygen carriers (OCs) including CuO/Al2O3, MnO2/ Al2O3 and NiO/Al2O3 for the gas-fired boiler flue gas were investigated. The results showed that NO was able to be reduced to N-2 through a direct reaction with the reduced OCs, and at the same time, the reduced OCs were converted to the oxidized OCs. Then, the oxidized OCs were able to be regenerated to the reduced OCs by introducing reducing gases. As such, the continuous denitration was achieved based on a chemical-looping combustion (CLC) denitration mechanism. Among the reduced CuO/Al2O3, MnO2/Al(2)O(3)and NiO/Al2O3, the reduced CuO/Al2O3 showed the best denitration activity. The NO denitration based on the reduced CuO/Al2O3 and CO also included the catalytic mechanism, whereas the CLC mechanism was dominant. The denitration performance of CO as a reducing gas was significantly better than that of C2H5OH, CH3OH, H-2 or NH3. 8% CO2 in the flue gas inhibited the denitration below 250 degrees C, whereas 15% H2O in the flue gas improved the denitration above 125 degrees C. O-2 in the flue gas deteriorated the denitration through reducing the proportion of the reduced species in the OC, whereas a high NO conversion could be obtained through increasing CO concentration to make. less than 1.0. For the denitration of a simulating flue gas based on the reduced CuO/Al2O3 and CO, the temperature needed for a NO conversion of 90% was as low as 125 degrees C at 10,000 h(-1).
机译:研究了包括CuO / Al 2 O 3,MnO 2 / Al 2 O 3和NiO / Al 2 O 3的过渡金属氧化物氧载体(OCS)的脱硝性能进行了用于燃气锅炉烟道烟道气。结果表明,通过与降低的OCS直接反应,不能将其降低至N-2,同时,将还原的OC转化为氧化OC。然后,通过引入还原气体,能够将氧化的OCS再生成降低的OC。因此,基于化学循环燃烧(CLC)脱硝机制来实现连续脱硝。在减少的CuO / Al 2 O 3中,MnO 2 / Al(2)O(3)和NiO / Al 2 O 3,还原的CuO / Al 2 O 3显示了最佳的脱硝活性。基于减少的CuO / Al 2 O 3和Co的NO脱硝也包括催化机制,而CLC机制是显性的。 CO作为还原气体的脱硝的性能明显优于C 2 H 5,CH 3 OH,CH 3 OH,H-2或NH 3。烟道气中的8%CO 2抑制了250℃以下的脱硝,而烟道气中的15%H 2 O改善了125℃的脱硝,烟气中的O-2通过降低降低物种的比例而劣化OC,虽然高度没有转换,但通过增加CO浓度来获得。小于1.0。对于基于还原的CuO / Al 2 O 3和CO的模拟烟道气的脱凡,NO转化率为90%的温度低至125℃,10,000h(-1)。

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