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Solution combustion synthesis of Co oxide-based catalysts for phenol degradation in aqueous solution

机译:Co氧化物基催化剂的固溶燃烧合成用于水溶液中的苯酚降解

摘要

Solution combustion using urea as a fuel was employed to synthesise Co oxide and Al2O3-, SiO2- and TiO2-supported Co oxide catalysts. The catalysts were characterised using several techniques such as N-2 adsorption/desorption, XRD, FTIR, UV-vis diffuse reflectance and SEM-EDX, and their catalytic activity was evaluated in phenol degradation in aqueous solution with sulphate radicals. Solution combustion is a simple and effective method in preparation of supported Co catalysts. Co3O4 was the major Co crystal phase in the samples prepared via the combustion synthesis. Bulk Co3O4 particles were not effective in reaction, but supported Co oxides showed higher activity than unsupported Co oxide. The supports influenced Co dispersion and catalytic activity. Co/TiO2 exhibited the highest activity, but it deactivated much faster than other two supported catalysts. Co/SiO2 showed a comparable activity to Co/Al2O3 and the best stability among the three Al2O3-, SiO2- and TiO2-supported Co catalysts. (C) 2012 Elsevier Inc. All rights reserved.
机译:以尿素为燃料的溶液燃烧被用于合成Co氧化物和Al2O3-,SiO2-和TiO2负载的Co氧化物催化剂。使用N-2吸附/解吸,XRD,FTIR,UV-vis漫反射和SEM-EDX等多种技术对催化剂进行了表征,并评估了在含硫酸根的水溶液中苯酚降解的催化活性。固溶燃烧是制备负载型Co催化剂的一种简单有效的方法。在通过燃烧合成制备的样品中,Co 3 O 4是主要的Co晶体相。大量的Co3O4颗粒在反应中无效,但是负载型Co氧化物的活性高于未负载型Co氧化物。载体影响了Co的分散和催化活性。 Co / TiO2表现出最高的活性,但其失活速度比其他两种负载型催化剂快得多。 Co / SiO2表现出与Co / Al2O3相当的活性,并且在三种Al2O3-,SiO2和TiO2负载的Co催化剂中具有最佳的稳定性。 (C)2012 Elsevier Inc.保留所有权利。

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