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Study of the use of a Pd-Pt-based catalyst for the catalytic combustion of storage tank VOCs

机译:基于PD-PT基催化剂的储存罐VOC催化燃烧的用途研究

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Catalytic combustion is a very cost-effective way to eliminate volatile organic compounds (VOCs). The components of the VOCs in storage tanks are complex, with alkanes, alkenes and aromatic hydrocarbons being the main components. The aromatic hydrocarbons are the most difficult organic compounds among the storage tank VOCs in terms of catalysing combustion, and they are easy to cause catalyst carbon deposition. In this work, the Pt/gamma-Al2O3, Pd/gamma-Al2O3, Pd-Pt/gamma-Al2O3, Pd-Pt/CeO2/gamma-Al2O3 and Pd-Pt/CeO2/gamma-Al2O3-N catalysts were prepared using an incipient wetness impregnation method. The performances of the catalysts were investigated using toluene and a simulation of VOCs in gas in a storage tank as model reactants. The study found that Pt has a higher catalytic combustion activity than Pd for the alkanes in the VOC gas in the simulation storage tank, and Pd has a higher catalytic combustion activity than Pt for the alkenes and toluene in the VOC gas in the simulation storage tank. The Pt addition enhances the activity of Pd-based catalysts for VOC catalytic combustion, and the Pd-Pt active component has good active stability. The catalyst prepared by using Pd-Pt alone has a defect in that it exhibits an insufficient ox-ygen supply performance in the catalytic combustion process. The addition of CeO2 improves the oxygen supply performance of the Pd-Pt-based catalyst. In addition, the activity of the Pd-Pt/CeO2/gamma-Al2O3-N catalyst prepared by reducing the validated amount of Pd-Pt is higher than that of a commercial catalyst. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:催化燃烧是消除挥发性有机化合物(VOC)的非常成本效益的方法。储罐中VOC的组分是复合物的,用烷烃,烯烃和芳烃是主要成分。芳烃是在催化燃烧方面是储罐VOC中最困难的有机化合物,它们易于引起催化剂碳沉积。在这项工作中,使用Pt / gamma-Al 2O3,Pd / Gamma-Al 2 O 3,Pd-Pt / Gamma-Al 2 O 3,Pd-Pt / CeO 2 /γ-Al2O3和Pd-Pt / CeO2 /γ-Al2O3-N催化剂初期湿润浸渍方法。使用甲苯研究催化剂的性能,以及作为模型反应物的储罐中的气体中的VOCS模拟。该研究发现,PT的催化燃烧活性高于模拟储罐中VOC气体中的烷烃的Pd,PD具有比仿真储罐中VOC气体中的烯烃和甲苯的催化燃烧活性更高的催化燃烧活性。 PT添加增强了VOC催化燃烧的Pd基催化剂的活性,PD-PT活性组分具有良好的活性稳定性。单独使用PD-PT制备的催化剂具有缺陷,即它在催化燃烧过程中表现出不足的牛油供应性能。 CEO2的添加改善了PD-PT基催化剂的氧供应性能。另外,通过降低验证量的PD-PT的验证量制备的PD-Pt / CeO 2 /γ-Al2O3-N催化剂的活性高于商业催化剂的活性。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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