首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Simultaneous conversion of nitrogen oxides and soot into nitrogen and carbon dioxide over iron containing oxide catalysts in diesel exhaust gas
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Simultaneous conversion of nitrogen oxides and soot into nitrogen and carbon dioxide over iron containing oxide catalysts in diesel exhaust gas

机译:柴油废气中含铁的氧化物催化剂同时将氮氧化物和烟so同时转化为氮气和二氧化碳

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This paper deals with the simultaneous catalytic conversion of NOx and soot into N-2 and CO2 in diesel exhaust gas. Several iron containing oxide catalysts were partially modified by the alkali metal potassium and were used for NOx-soot reaction in a model exhaust gas. Fe1.9K0.1O3 has shown highest catalytic performance for N2 formation in the so far investigated catalysts. Further studies have shown that Fe1.9K0.1O3 was deactivated in a substantial way after about 20 TPR experiments due to the agglomeration of the promoter potassium. Experiments carried out over the aged Fe1.9K0.1O3 catalyst have shown that NOx-soot reaction was suppressed at higher O-2 concentration, since O-2-soot conversion was kinetically favored. In contrast to that, the catalytic activity was increased in presence of NO2 and H2O. Mechanistic examinations suggest that (CO) intermediates, formed at the soot surface, are the reactive sites in the NOx-soot reaction. Higher catalytic performance in presence of NO2 could be explained by the enhanced formation of these (CO) species. Moreover, nitrate species formed at the catalyst surface might also play an important role in NOx-soot conversion. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 31]
机译:本文研究了柴油机废气中NOx和烟灰同时催化转化为N-2和CO2的方法。几种含铁的氧化物催化剂被碱金属钾部分改性,并用于模型废气中的NOx烟灰反应。在迄今为止研究的催化剂中,Fe1.9K0.1O3对形成N2表现出最高的催化性能。进一步的研究表明,由于启动子钾的团聚,Fe1.9K0.1O3在约20次TPR实验后基本上失活了。在老化的Fe1.9K0.1O3催化剂上进行的实验表明,由于在动力学上有利于O-2-烟灰的转化,因此在较高的O-2浓度下,NOx烟灰的反应受到抑制。与此相反,在NO 2和H 2 O存在下催化活性增加。机械检查表明,在烟灰表面形成的(CO)中间体是NOx-烟灰反应中的反应部位。这些(CO)物种形成的增加可以解释在NO2存在下更高的催化性能。此外,在催化剂表面形成的硝酸盐也可能在NOx烟灰转化中起重要作用。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:31]

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