Liu Xiaoran, Shi Jiaming, Bai Xuefeng, Wu Wei
School of Chemistry and Material Science, Heilongjiang University, Harbin, 150080, China.
Institute of Petrochemistry, Heilongjiang Academy of Sciences, Harbin, 150040, China.
Environ Sci Pollut Res Int. 2022 Jul;29(32):48558-48572. doi: 10.1007/s11356-022-19203-0. Epub 2022 Feb 22.
N-Ethylcarbazole (NEC), as a promising liquid organic hydrogen carrier (LOHC), can store and release hydrogen through a reversible catalytic hydrogenation and dehydrogenation reaction. In this paper, RuPd bimetallic nanocatalyst supported on MgAl-layered double hydroxide (RuPd/LDH) was prepared by ultrasonic-assisted reduction method, and its catalytic performance in NEC hydrogenation was also studied. Under the action of ultrasound, hydroxyl groups (-OH) on the surface of LDH support dissociated into highly reductive hydrogen radicals for the reduction of Ru and Pd to Ru and Pd. For the 4Ru1Pd/LDH-(300-1) catalyst prepared under ultrasonic conditions of 25 kHz, 300 W, and 1 h, the average size of the metal nanoparticles was only 1.23 nm, which indicated that Ru, Pd, and RuPd NPs were highly dispersed on the support. The strong electronic effects between Ru and Pd improved its catalytic performance in NEC hydrogenation. With m/m = 0.2wt%, pressure of 6 MPa, and temperature of 120 °C, the selectivity of dodecahydro-N-ethylcarbazole (12H-NEC) was 98.07%, and the capacity and percentage of hydrogen storage were 5.75wt% and 99.3%, respectively. After the catalyst was recycled 8 times, the percentage of hydrogen storage still reached 98.9%, showing higher stability. The preparation method is simple and environmentally friendly, providing an idea for the preparation of ultrafine bimetallic catalysts with high catalytic activity and stability.
N-乙基咔唑(NEC)作为一种很有前景的液态有机氢载体(LOHC),可以通过可逆的催化加氢和脱氢反应来储存和释放氢气。本文采用超声辅助还原法制备了负载在MgAl层状双氢氧化物上的RuPd双金属纳米催化剂(RuPd/LDH),并研究了其在NEC加氢反应中的催化性能。在超声作用下,LDH载体表面的羟基(-OH)解离成高还原性的氢自由基,用于将Ru和Pd还原为Ru和Pd。对于在25 kHz、300 W超声条件下制备1 h的4Ru1Pd/LDH-(300-1)催化剂,金属纳米颗粒的平均尺寸仅为1.23 nm,这表明Ru、Pd和RuPd纳米颗粒在载体上高度分散。Ru和Pd之间的强电子效应提高了其在NEC加氢反应中的催化性能。在m/m = 0.2wt%、压力为6 MPa、温度为120℃的条件下,十二氢-N-乙基咔唑(12H-NEC)的选择性为98.07%,储氢容量和储氢百分比分别为5.75wt%和99.3%。催化剂循环使用8次后,储氢百分比仍达到98.9%,显示出较高的稳定性。该制备方法简单且环保,为制备具有高催化活性和稳定性的超细双金属催化剂提供了思路。