Yu Wenlong, Ding Junwei, Yu Shitao, Liu Fusheng
College of Chemical Engineering, Qingdao University of Science and Technology 53 Zhengzhou Road Qingdao 266042 People's Republic of China
RSC Adv. 2018 Jun 26;8(41):23262-23267. doi: 10.1039/c8ra03397h. eCollection 2018 Jun 21.
Effects of water on a catalytic reaction system for reductive alkylation of -aminodiphenylamine (-ADPA) with 5-methyl-2-hexanone (MIAK) was studied. Platinum nanoparticles supported on activated carbon with high specific surface area were used as catalysts for reductive alkylation reaction under different water content conditions. Schiff base forming data, catalytic activity and stability of the catalysts were investigated under the aforementioned reaction conditions. Fresh and used catalysts were characterized by TEM, SEM, XRD, ICP, laser particle size analysis, N physical adsorption and CO chemical adsorption to explore the effects of water on the catalytic reaction system for the ketone/amine reductive alkylation reaction. The characterization results indicated that catalyst support pulverization and Pt loss occurred in the reused catalyst, and the trend was more obvious under the conditions of higher water content. Water in the reaction system could also aggravate the decrease of the catalyst's specific surface area and pore volume, which should be a major reason of the lower catalytic performance.
研究了水对以5-甲基-2-己酮(MIAK)对二苯胺(-ADPA)进行还原烷基化反应的催化反应体系的影响。以高比表面积活性炭负载的铂纳米颗粒作为不同水含量条件下还原烷基化反应的催化剂。在上述反应条件下研究了席夫碱形成数据、催化剂的催化活性和稳定性。通过透射电子显微镜(TEM)、扫描电子显微镜(SEM)、X射线衍射(XRD)、电感耦合等离子体质谱(ICP)、激光粒度分析、N₂物理吸附和CO化学吸附对新鲜催化剂和使用过的催化剂进行表征,以探究水对酮/胺还原烷基化反应催化反应体系的影响。表征结果表明,在重复使用的催化剂中发生了催化剂载体粉化和Pt流失现象,且在较高水含量条件下这种趋势更为明显。反应体系中的水还会加剧催化剂比表面积和孔体积的减小,这应该是催化性能降低的主要原因。