Manganese-Iron Mixed Oxides of Spinel Structure as Soot Combustion Catalysts

Piotr Legutko, Natalia Zwada, Marcin Kozieł, Marek Michalik, Andrzej Adamski
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Abstract

Background: An abatement of emission of particulate matter (mainly soot) is a challenge for the scientific community. An active and cheap catalytic system for soot combustion can help solve this problem. Objective: The aim of this study was to investigate the influence of the composition of a series of Mn3-xFexO4 (x = 0 - 3) oxides of spinel structure on their catalytic properties in soot combustion. Methods: Samples were synthesized by coprecipitation followed by a consecutive thermal treatment. Their structure was verified by X-ray diffraction and Raman spectroscopy. The obtained catalysts were tested in model soot oxidation (Printex U) in both tight and loose contact modes. Results: It was found that different mechanisms of soot combustion occurred dependently on a chosen contact mode. Conclusion: It was confirmed that in the case of tight contact (TC), a coexistence of divalent manganese and iron species was decisive for the catalytic activity, whereas a presence of trivalent manganese centers was crucial in the case of loose contact (LC). Mn1.2Fe1.8O4 was found to be the most active catalyst.
尖晶石结构锰铁混合氧化物作为煤烟燃烧催化剂
背景:减少颗粒物(主要是煤烟)的排放是科学界面临的一个挑战。一种高效廉价的煤烟燃烧催化系统可以帮助解决这一问题。目的:研究尖晶石结构Mn3-xFexO4 (x = 0 - 3)氧化物的组成对其烟尘燃烧催化性能的影响。方法:采用共沉淀法合成样品,然后进行连续热处理。用x射线衍射和拉曼光谱对其结构进行了验证。所制备的催化剂在烟灰氧化模型(Printex U)上进行了紧密和松散接触模式的测试。结果:烟灰燃烧的不同机理取决于所选择的接触方式。结论:在紧密接触(TC)的情况下,二价锰和铁的共存是催化活性的决定性因素,而在松散接触(LC)的情况下,三价锰中心的存在是至关重要的。mn1.2 fe1.80 o4是最具活性的催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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