首页> 外文期刊>International journal of hydrogen energy >Highly Active Structured Catalyst Made Up Of Mesoporous Co_3o_4 Nanowires Supported On A Metal Wire Mesh For The Preferential Oxidation Of Co
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Highly Active Structured Catalyst Made Up Of Mesoporous Co_3o_4 Nanowires Supported On A Metal Wire Mesh For The Preferential Oxidation Of Co

机译:高活性结构化催化剂,由介孔的Co_3o_4纳米线支撑在金属丝网上,用于Co的优先氧化

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摘要

A novel structured catalyst made up of mesoporous Co_3O_4 nanowire arrays (active phase) supported on a stainless steel mesh is presented. An important advantage of this catalytic system is that the formation and growth of cobalt oxide nanowires takes place on the surface of stainless steel wires. These mesoporous Co_3O_4 nanowires have a diameter of 500 nm, a BET surface area of 71 m~2/g and a pore size of ~3.4 nm. The catalytic behavior of this system towards the preferential oxidation of CO was investigated. To this end a microreactor was constructed consisting of a metal wire mesh-Co_3O_4 nanowire composite rolled and inserted into a standard 1/4" stainless steel tube. This structured catalytic system exhibits several important properties: a) a high heat exchange rate and a low pressure drop, b) a remarkable stability over the whole temperature range analyzed (100-175 ℃) and c) a good catalytic activity which doubles that of the best Co_3O_4 catalyst previously reported. An added feature of this synthetic procedure is that it allows the simultaneous synthesis of unsupported porous Co_3O_4 particles (~100 μm diameter) with slightly different characteristics to those of the supported nanowires. Catalytic tests on these particles highlighted the close relationship between the calcination temperature, the reducibility of the produced spinel and the catalytic activity during the PROX reaction.
机译:提出了一种新型的结构化催化剂,该催化剂由负载在不锈钢网上的介孔Co_3O_4纳米线阵列(活性相)组成。该催化体系的重要优点是氧化钴纳米线的形成和生长发生在不锈钢线的表面上。这些中孔的Co_3O_4纳米线的直径为500 nm,BET表面积为71 m〜2 / g,孔径为〜3.4 nm。研究了该体系对CO优先氧化的催化行为。为此,构建了一个微型反应器,该微型反应器由金属丝网-Co_3O_4纳米线复合材料制成,该复合材料经卷制并插入标准的1/4“不锈钢管中。这种结构化的催化体系具有以下重要性能:a)高热交换率和低热交换率b)在所分析的整个温度范围内(100-175℃)都具有显着的稳定性,并且c)良好的催化活性,是先前报道的最佳Co_3O_4催化剂的两倍。同时合成无负载的多孔Co_3O_4粒子(直径约100μm),其特性与负载的纳米线略有不同,对这些粒子的催化测试突显了煅烧温度,生成的尖晶石的还原性与催化过程中催化活性之间的密切关系。 PROX反应。

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