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Coupling Noble Metals and Carbon Supports in the Development of Combustion Catalysts for the Abatement of BTX Compounds in Air Streams

机译:燃烧催化剂开发中用于减少气流中BTX化合物的贵金属和碳载体的偶联

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The catalytic combustion of volatile organic compounds (VOCs) is one of the most important techniques to remove these pollutants from the air stream, but it should be carried out at the lowest possible temperature, saving energy and avoiding the simultaneous formation of nitrogen oxides (NOx). Under these experimental conditions, the chemisorption of water generated from VOCs combustion may inhibit hydrophilic catalysts. Nowadays, a wide variety of carbon materials is available to be used in catalysis. The behavior of these hydrophobic materials in the development of highly active and selective combustion catalysts is analyzed in this manuscript. The support characteristics (porosity, hydrophobicity, structure, surface chemistry, etc.) and the active phase nature (noble metals: Pt, Pd) and dispersion were analyzed by several techniques and the results correlated with the dual adsorptive and/or catalytic performance of the corresponding catalysts. The coupling of highly active phases and carbon materials (activated carbons, honeycomb coated monoliths, carbon aerogels, etc.) with tuneable physicochemical properties leads to the complete abatement of benzene, toluene and xylenes (BTX) from dilute air streams, being selectively oxidized to CO2 at low temperatures.
机译:挥发性有机化合物(VOC)的催化燃烧是从气流中去除这些污染物的最重要技术之一,但应在尽可能低的温度下进行,以节约能源并避免同时形成氮氧化物(NO x )。在这些实验条件下,VOC燃烧产生的水的化学吸附可能会抑制亲水性催化剂。如今,各种各样的碳材料都可用于催化。本文分析了这些疏水材料在高活性和选择性燃烧催化剂的开发中的行为。通过几种技术分析了载体的特性(孔隙度,疏水性,结构,表面化学等)以及活性相的性质(贵金属:Pt,Pd)和分散体,其结果与三元醇的双重吸附和/或催化性能相关。相应的催化剂。高活性相与具有可调节理化特性的碳材料(活性炭,蜂窝状整体材料,碳气凝胶等)的耦合导致稀释空气流中苯,甲苯和二甲苯(BTX)的完全消除,被选择性氧化为低温下的CO 2

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