Lan Lijuan, Liu Ying, Liu Sujing, Ma Xuanxuan, Li Xiaoqiang, Dong Zhicheng, Xia Chuanhai
a School of Environment and Materials Engineering , Yantai University , Yantai , People's Republic of China.
b School of Resources and Environmental Engineering , Ludong University , Yantai , People's Republic of China.
Environ Technol. 2019 May;40(12):1615-1623. doi: 10.1080/09593330.2018.1426645. Epub 2018 Jan 25.
Carbon nanotubes (CNTs), activated carbon (AC), graphene, and aluminum oxide (AlO) supported 5% Pd catalysts were prepared by the conventional impregnation method, and catalytic activity was tested in the hydrogenation of 4-chlorophenol (4-CP) and nitrobenzene (NB) under ambient conditions (313 K and atmospheric pressure). It was found that catalytic activity was greatly affected by the supports. Moreover, Pd/CNTs catalyst exhibited much higher catalytic activity than the other three supported Pd catalysts. The mechanism of this phenomenon was studied through catalyst characterization (ICP-MS, Brunauer-Emmett-Teller [BET], TEM, and SEM). It was found that the mean particle size of Pd nanoparticles for Pd/CNTs (4.3 nm) was smaller than that for Pd/AC (6.9 nm), Pd/AlO (5.0 nm), and Pd/graphene (5.2 nm). Moreover, the actual loading amounts of Pd and BET surface areas were not the main reasons for the different catalytic activity of the four supported Pd catalysts. Above all, the smaller Pd particles of Pd/CNTs enabled the Pd/CNTs catalyst to exhibit much higher catalytic activity for the hydrogenation reactions.
采用传统浸渍法制备了碳纳米管(CNTs)、活性炭(AC)、石墨烯和氧化铝(AlO)负载的5%钯催化剂,并在环境条件(313 K和大气压)下对4-氯苯酚(4-CP)和硝基苯(NB)的氢化反应进行了催化活性测试。结果发现,载体对催化活性有很大影响。此外,Pd/CNTs催化剂的催化活性远高于其他三种负载型钯催化剂。通过催化剂表征(ICP-MS、Brunauer-Emmett-Teller [BET]、TEM和SEM)研究了这一现象的机理。结果发现,Pd/CNTs的钯纳米颗粒平均粒径(4.3 nm)小于Pd/AC(6.9 nm)、Pd/AlO(5.0 nm)和Pd/石墨烯(5.2 nm)。此外,钯的实际负载量和BET表面积不是四种负载型钯催化剂催化活性不同的主要原因。最重要的是,Pd/CNTs中较小的钯颗粒使Pd/CNTs催化剂在氢化反应中表现出更高的催化活性。