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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Selective catalytic reduction of NOx with CH3OH, C2H5OH and C3H6 in the presence of O-2 over Ag/Al2O3 catalyst: Role of surface nitrate species
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Selective catalytic reduction of NOx with CH3OH, C2H5OH and C3H6 in the presence of O-2 over Ag/Al2O3 catalyst: Role of surface nitrate species

机译:在O-2存在下,在Ag / Al2O3催化剂上用CH3OH,C2H5OH和C3H6选择性催化还原NOx:表面硝酸盐的作用

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The involvement of the reaction of surface nitrate [NO3-(ads)] species with different reductants (C3H6, C2H5OH and CH3OH) in the selective catalytic reduction of nitrogen oxides (NOx) over a Ag/Al2O3 catalyst has been studied by in situ diffuse reflectance infrared Fourier transform (DRIFT) spectroscopy and temperature-programmed desorption (TPD). When an NO/O-2 mixture was exposed to a Ag/Al2O3 catalyst at 150 degrees C, three kinds of nitrate species (bridging, monodentate and bidentate) were observed by DRIFT. The thermal stability of the monodentate NO3-(ads) species was higher than that of the bridging and bidentate NO3-(ads) species, which was confirmed by DRIFT and TPD measurements. The monodentate NO3-(ads) species reacted effectively with C2H5OH and CH3OH in the presence of O-2 to form surface isocyanate [NCO(ads)] species at 250 degrees C, whereas the bridging and bidentate NO3-(ads) species reacted minimally. All NO3-(ads) species were largely unreactive with C3H6 in the presence of O-2 at temperatures below 250 degrees C. On the other hand, the order of reactivity in the reduction of NO, at temperatures below 350 degrees C was in good agreement with that of both the reactivity of the monodentate NO3-(ads) species and the ease of NCO(a) formation (C2H5OH > CH3OH > C3H6). Based on these findings, the involvement of the reactivity of NO3-(ads) species and the formation of NCO(ads) species in the selective reduction of NOx are discussed. [References: 34]
机译:通过原位扩散研究了表面硝酸盐[NO3-(ads)]与不同还原剂(C3H6,C2H5OH和CH3OH)的反应在Ag / Al2O3催化剂上选择性催化还原氮氧化物(NOx)的过程。反射红外傅里叶变换(DRIFT)光谱和程序升温脱附(TPD)。当NO / O-2混合物在150℃下暴露于Ag / Al2O3催化剂时,通过DRIFT观察到三种硝酸盐物种(桥键,单齿和双齿)。单齿NO3-(ads)物种的热稳定性高于桥接和双齿NO3-(ads)物种的热稳定性,这已通过DRIFT和TPD测量得到了证实。在O-2存在下,单齿NO3-(ads)物种与C2H5OH和CH3OH有效反应,在250摄氏度下形成表面异氰酸酯[NCO(ads)]物种,而桥接和双齿NO3-(ads)物种的反应最少。在低于250摄氏度的温度下,在O-2存在的情况下,所有的NO3-(ads)物种都基本上不与C3H6反应。另一方面,低于350摄氏度的温度下,NO还原的反应顺序很好。与单齿型NO3-(ads)物种的反应性和NCO(a)形成的难易性(C2H5OH> CH3OH> C3H6)一致。基于这些发现,讨论了NO3-(ads)物种的反应性和NCO(ads)物种的形成与NOx选择性还原的关系。 [参考:34]

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