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热老化对 Pt-Pd 的电子和结构性能及甲苯氧化活性的影响。

Effects of thermal aging on the electronic and structural properties of Pt-Pd and toluene oxidation activity.

机构信息

Center for Environment and Sustainable Resources, Korea Research Institute of Chemical Technology (KRICT), Daejeon, Republic of Korea.

Development team, Ecroprohn, Cheongji-si, Chungcheongbok-do, Republic of Korea; Department of Chemical Engineering, Chungbuk University, Chungcheongbuk-do, Republic of Korea.

出版信息

Sci Total Environ. 2022 Nov 15;847:157482. doi: 10.1016/j.scitotenv.2022.157482. Epub 2022 Jul 25.

Abstract

Catalytic oxidation is a feasible method for remediating volatile organic compounds (VOCs), due to its lower energy consumption and mineralization of VOCs into HO and CO. Noble metal-based catalysts are preferred for the catalytic oxidation of VOCs because of their superior activity, but they are usually deactivated by thermal aging which sinters the metal particles. Here, we report that Pt-Pd/AlO thermally aged at 700-900 °C in air showed enhanced catalytic activity for toluene oxidation in humid conditions. There were electronic and structural changes in the thermally aged Pt-Pd/AlO, as confirmed by numerous analyses. Both Pt and Pd existed in a metallic rather than oxidized state without additional reduction steps. The noble metal particles were assembled to form Pt-Pd alloy, in the form of isolated Pd atoms surrounded by Pt atoms. This specific alloy structure was found to be crucial to the observed enhancement in catalytic toluene oxidation at low temperature.

摘要

催化氧化是一种可行的修复挥发性有机化合物 (VOCs) 的方法,因为它可以消耗较少的能量,并且可以将 VOCs 矿化为 HO 和 CO。贵金属基催化剂因其优异的活性而被优先用于 VOCs 的催化氧化,但它们通常会因热老化而失活,从而导致金属颗粒烧结。在这里,我们报告在空气中于 700-900°C 下热老化的 Pt-Pd/AlO 在潮湿条件下对甲苯氧化表现出增强的催化活性。通过多种分析证实,热老化的 Pt-Pd/AlO 发生了电子和结构变化。Pt 和 Pd 均以金属态而不是氧化态存在,无需额外的还原步骤。贵金属颗粒组装形成 Pt-Pd 合金,其中孤立的 Pd 原子被 Pt 原子包围。这种特定的合金结构对于在低温下观察到的催化甲苯氧化增强至关重要。

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