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Synthesis of Zeolite ZSM-5 on Raney Fe: High Hydrothermal Stability DeNOx Catalyst

机译:Raney Fe的沸石ZSM-5的合成:高水热稳定性DeNox催化剂

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The selective catalytic reduction(SCR) of nitric oxide by ammonia or hydrocarbons in the presence of excess oxygen is currently the most widespread method for the clean-up of the flue-gas. Although Cu-ZSM-5 zeolite has been found to possess higher activity as a potential DeNOx catalyst, it is severely poisoned by the H_2O that is unavoidably produced in the combustion process within the engine, and undergoes dealumination and physical breakdown by severe steaming under reaction conditions. Hall et al. [1,2] reported that "overexchanged" FeZSM-5 catalysts are more active than comparable CuZSM-5 preparations and are much more durable, but conventional ion-exchange method did not significantly raise the exchange level. In order to stabilize the activity for NO removal in the presence of water, ZSM-5 was grown in situ on Raney Ni. The Al source for synthesizing the zeolite is the residual Al in the Raney Ni, and hydrothermal and thermal stability were greatly improved in the SCR of NOx with ammonia. In present work, ZSM-5/Raney Fe was prepared and which was made catalytically active only by the thermal and/or hydrothermal treatment. The DeNOx activity and stability of the catalyst with ammonia as the reductant in the presence of excess oxygen, water and SO_2 were investigated.
机译:在过量氧气存在下通过氨或烃的一氧化氮的选择性催化还原(SCR)是目前最广泛的烟道气清洗的方法。虽然铜-ZSM-5沸石已被发现具有较高的活性作为一个潜在的脱硝催化剂,它严重地受到其在所述发动机内的燃烧过程不可避免地产生的H_2O中毒,并经历脱铝并且通过在反应剧烈汽蒸物理击穿状况。大厅等。 [1,2]报道称,“过度兴奋”的Fezsm-5催化剂比相当的Cuzsm-5制备更活跃,并且更耐用,但常规的离子交换方法没有显着提高交换水平。为了稳定在水存在下除去的活性,ZSM-5在Raney Ni原位生长。用于合成沸石的Al源是Raney Ni中的残留Al,在NOx的氨的SCR中大大提高了水热稳定性。在目前的工作中,制备ZSM-5 / Raney Fe,并且仅通过热和/或水热处理使其催化活性。研究了氨与氨作为在过量氧,水和SO_2存在下还原剂的催化剂的止吐活性和稳定性。

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