一种无氨脱硝方法:活性炭在Cu-K双金属辅助下直接还原NOx

An ammonia-free denitration method: Direct reduction of NOx over activated carbon promoted by Cu-K bimetals

  • 摘要: 本研究利用等体积浸渍法制备出来一种Cu-K双金属负载活性炭,可直接用于烟气脱硝,并在较宽的温度窗口下保持良好的脱硝效果。研究还通过程序升温表面反应 (TPSRs) 以及 BET、SEM、XRD、XPS、H2-TPR、Raman 和 FT-IR 等表征手段对双金属辅助脱硝的机理进行了研究与讨论。研究结果表明,炭材料表面形成的活性官能团是重要的中间产物,在还原过程中起着关键作用。氧的加入明显促进了化学吸附和中间产物含氧官能团 C(O) 的形成,提高了NO的还原速率。双金属氧化物催化直接还原NO的效果明显,铜∶钾= 2∶1 时,在300 ℃下脱硝率可达 90%,催化活性主要来自 CuO/Cu2O 的氧化还原循环,钾抑制了铜在炭材料表面的团聚,有效提高了铜的催化效率。

     

    Abstract: As ammonia slip becomes more serious with the traditional deNOx application, ammonia-free technologies have received more and more attention recently. Cu-K bimetal loaded activated carbon catalysts were prepared by equivalent-volume impregnation method for the direct reduction of NO and showed good NO reduction performance in a wide temperature range under temperature-programmed surface reactions (TPSRs) conditions in aerobic and anaerobic environments. The catalysts were characterized by BET, SEM, XRD, XPS, H2-TPR, Raman and FT-IR techniques and the NO reduction mechanism was analyzed. Experimental results show that the active functional groups formed on the surface of activated carbon are the important intermediate products and play a key role in the reduction reaction. The presence of O2 greatly promotes the formation of the intermediate, C(O) (Oxygen-containing functional groups on the carbon surface), leading to the increase reduction rate of NO. The bimetallic oxides catalysts are obviously effective to directly reduce NO. When the ratio of copper: potassium is 2∶1, the NO reduction efficiency is about 90% at 300 °C. The catalytic activity mainly depends on the redox cycle of CuO/Cu2O, and the potassium inhibits the agglomeration of copper on the surface of carbon materials and enhances the catalytic reactivity of Cu.

     

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