Study of Fe, Co, and Mn-based perovskite-type catalysts for the simultaneous control of soot and NOX from diesel engine exhaust

Ganesh Chandra Dhal , Subhashish Dey , Devendra Mohan , Ram Prasad
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引用次数: 18

Abstract

This paper discusses, the nanometric size effects, including intrinsic factors such as structure, the nature of A-site ion substitution, B-site ions, on the redox properties of nanometric La1−xKxFeO3, La1−xKxCoO3, La1−xNaxMnO3, La1−xKxMnO3, perovskite-type oxide catalysts. The external factors of catalyst and soot particulate, the content of NO and O2 and the ratio of catalyst and gas flow rate on the catalytic activity for the simultaneous removal of NOX and soot particulates were systematically investigated. The catalysts were characterized by means of SEM, EDX, XRD and FT-IR and the catalytic potential for the simultaneous removal of nitrogen oxides (NOx) and diesel particulate matter (soot) were evaluated by temperature-programmed oxidation reactions. The entire catalyst samples obtained the perovskite structure, with high activities for the simultaneous elimination of soot and NOX. Alternatively, the number of surface atoms is much higher than the normal bulk catalysts and the size of the nanoparticle is also smaller. These characteristics are beneficial for the adsorption and activation of reactant molecules including NO or O2, or even soot particle.

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同时控制柴油机排气烟尘和NOX的Fe、Co和Mn基钙钛矿型催化剂的研究
本文讨论了纳米尺寸效应,包括结构、A位离子取代的性质、B位离子等内在因素对纳米La1-xKxFeO3、La1-xKxCoO3、La1−xNaxMnO3、La1-xKxMnO3钙钛矿型氧化物催化剂氧化还原性能的影响。系统地研究了催化剂和烟尘颗粒、NO和O2含量以及催化剂与气体流量的比值等外部因素对同时去除NOX和烟尘颗粒的催化活性的影响。通过SEM、EDX、XRD和FT-IR对催化剂进行了表征,并通过程序升温氧化反应评估了催化剂同时去除氮氧化物(NOx)和柴油颗粒物(烟灰)的催化潜力。整个催化剂样品获得了钙钛矿结构,具有同时消除烟灰和NOX的高活性。或者,表面原子的数量比普通本体催化剂高得多,并且纳米颗粒的尺寸也更小。这些特性有利于包括NO或O2或甚至烟灰颗粒的反应物分子的吸附和活化。
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