首页> 外文期刊>The Canadian Journal of Chemical Engineering >NO REDUCTION BY CO OVER IRON-BASED CATALYSTS SUPPORTED BY ACTIVATED SEMI-COKE
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NO REDUCTION BY CO OVER IRON-BASED CATALYSTS SUPPORTED BY ACTIVATED SEMI-COKE

机译:通过CO通过活性半焦相支持的铁基催化剂的CO.

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Activated semi-coke was developed and loaded by iron species and other assistant metals (Co, La, and Ce) using a hydrothermal method to obtain the abatement of NOx emissions from power plants and then used for NO removal by CO. These catalysts were systematically characterized by N-2 physisorption, scanning electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS), and the activity of NOx reduction. The results showed that the activated semi-coke that was loaded by Fe species could achieve an excellent NOx conversion of 96.5% at 350 degrees C with 0.2g/g (20wt%) of the precursor content (catalyst denoted as Fe20/ASC). This was ascribed to higher amounts of surface Fe3+ and chemisorbed oxygen. Furthermore, Co was the best promoter among Co, La, and Ce. This enhancement was attributed to the increase of the specific surface area and chemisorbed oxygen, as well as the formation of CoFe2O4. The synergistic effect between Fe and Co species was beneficial for the formation of oxygen vacancies, which could promote the adsorption and dissociation of NO. The in situ DRIFTS results indicated that the reaction for NOx removal by CO over activated semi-coke supported catalysts mainly occurred between coordinated nitrates/nitryls and the adsorbed COx species.
机译:使用水热法通过铁物种和其他助理金属(Co,La和Ce)开发和装载活性的半焦,以获得从发电厂的NOx排放的减少,然后用CO除去。这些催化剂系统地其特征在于N-2物理学,扫描电子显微镜,X射线衍射,X射线光电子能谱,原位漫射反射红外傅里叶变换光谱(漂移),以及NOx还原的活性。结果表明,由Fe物种装载的活化的半焦炭可以在350℃下达到96.5%的优异NOx转化率,0.2g / g(20wt%)的前体含量(催化剂表示为Fe20 / ASC)。这归因于较高量的表面Fe3 +和化学吸附氧。此外,CO是CO,LA和CE中最好的推动者。这种增强归因于比表面积和化学吸附氧的增加以及COFE2O4的形成。 Fe和Co物种之间的协同效应有利于形成氧空位,这可以促进NO的吸附和解离。原位漂移结果表明,CO通过CO过的NOx除去的反应主要发生在配位硝酸盐/ NITRYL和吸附的COX物种之间。

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