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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Selective catalytic reduction of nitrogen oxide by hydrocarbons over mordenite-type zeolite catalysts
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Selective catalytic reduction of nitrogen oxide by hydrocarbons over mordenite-type zeolite catalysts

机译:丝光沸石型沸石催化剂上的烃类选择性催化还原氮氧化物

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The reduction of NO by hydrocarbons such as C2H4, C2H6, C3H6, and C3H8 has been investigated over mordenite-type zeolite catalysts including HM, CuHM, NZA (natural zeolite), and CuNZA prepared by an ion-exchange method in a continuous flow fixed-bed reactor. NO conversion over CuNZA catalyst reaches about 94% with 2000 ppm of C3H6 at 500°C. As reductants, alkenes seem to exhibit a higher performance for NO conversion than alkanes regardless of the catalysts. No deterioration of the catalytic activity due to carbonaceous deposits for CuNZA was observed above 400°C even after 30 h of on-stream time, but SO2 in the feed gas stream causes a severe poisoning of the CuNZA catalyst. The effect of H2O on NO conversion was significant regardless of the catalysts and the reductants employed in this study. However, CuNZA catalyst shows a unique water tolerance with C3H6. The reaction path of NO to N2 is the most important factor for high performance of this catalytic system. NO is directly reduced by a reaction intermediate, Cn′Hm′(O) formed from hydrocarbon and O2, N2O is another reaction intermediate which can be easily removed by Cn′Hm′(O).
机译:已经研究了通过离子交换法在连续流动固定条件下,通过HM,CuHM,NZA(天然沸石)和CuNZA等丝光沸石型沸石催化剂研究了碳氢化合物(例如C2H4,C2H6,C3H6和C3H8)还原NO的情况。床反应器。在500°C下使用2000 ppm的C3H6,CuNZA催化剂上的NO转化率达到约94%。作为还原剂,无论催化剂如何,烯烃似乎都比烷烃表现出更高的NO转化性能。即使在运行时间超过30小时后,也未在400°C以上观察到因CuNZA的碳质沉积而引起的催化活性下降,但进料气流中的SO2导致CuNZA催化剂严重中毒。不管本研究中使用的催化剂和还原剂如何,H2O对NO转化的影响都很大。但是,CuNZA催化剂对C3H6表现出独特的耐水性。 NO到N 2的反应路径是该催化系统高性能的最重要因素。 NO被反应中间体直接还原,由烃和O2形成的Cn'Hm'(O),N2O是另一种易于被Cn'Hm'(O)除去的反应中间体。

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