Institute of Catalytic Reaction Engineering, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
Institute of Catalytic Reaction Engineering, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
J Environ Sci (China). 2022 Jun;116:114-124. doi: 10.1016/j.jes.2021.06.031. Epub 2022 Jan 11.
The preparation of highly active supported noble metal catalysts with a low noble metal loading has always been the ultimate goal of researchers working on catalysis. Hydrothermally treated Pt/AlO (Pt/AlO-H) exhibits better catalytic activity than that (Pt/AlO-C) treated via the conventional calcination approach. At the high space velocity of 100,000 mL/(g∙hr), the temperature that correspond to 50% toluene conversion (T) of Pt/AlO-H is 115°C lower than that of Pt/AlO-C, and the turnover frequency (TOF) value can reach 0.0756 sec. The mechanism by which the hydrothermal approach enhances Pt/AlO activity has been investigated. The structure associated with the high catalytic activity of Pt nanoparticles (NPs) can be retained via hydrothermal treatment. Furthermore, the support is transformed to AlO(OH) with numerous surface hydroxyl groups, which in turn can facilitate the adsorption of toluene. And the synergistic effects of Pt NPs and AlO(OH) increases the contents of Pt in oxidation state and active oxygen, which are beneficial for toluene oxidation.
制备高活性负载量低的负载型贵金属催化剂一直是催化领域研究人员的最终目标。水热处理的 Pt/AlO(Pt/AlO-H)比通过传统煅烧方法处理的 Pt/AlO(Pt/AlO-C)具有更好的催化活性。在高空间速度 100,000 mL/(g·hr)下,Pt/AlO-H 的对应于甲苯转化率(T)为 50%的温度比 Pt/AlO-C 低 115°C,且周转率(TOF)值可达到 0.0756 sec。已经研究了水热法增强 Pt/AlO 活性的机制。通过水热处理可以保留与 Pt 纳米颗粒(NPs)高催化活性相关的结构。此外,载体转化为具有大量表面羟基的 AlO(OH),这反过来又可以促进甲苯的吸附。Pt NPs 和 AlO(OH) 的协同作用增加了氧化态和活性氧中 Pt 的含量,这有利于甲苯氧化。