...
首页> 外文期刊>Kinetics and catalysis >Catalytic properties of nanostructured Pd-Ag catalysts in the liquid-phase hydrogenation of terminal and internal alkynes
【24h】

Catalytic properties of nanostructured Pd-Ag catalysts in the liquid-phase hydrogenation of terminal and internal alkynes

机译:纳米结构PD-Ag催化剂在末端液相氢化液和内部炔烃中的催化性能

获取原文
获取原文并翻译 | 示例
           

摘要

A comparative catalytic study of Pd-Ag bimetallic catalysts and the commercial Lindlar catalyst (Pd-Pb/CaCO3) has been carried out in the hydrogenation of phenylacetylene (PA) and diphenylacetylene (DPA). The Pd-Ag catalysts have been prepared using the heterobimetallic complex PdAg2(OAc)(4)(HOAc)(4) supported on MgAl2O4 and aluminas (alpha-Al2O3 and gamma-Al2O3). Physicochemical studies have demonstrated that the reduction of supported Pd-Ag complex with hydrogen results in homogeneous Pd-Ag nanoparticles. Equal in selectivity to the Lindlar catalyst, the Pd-Ag catalysts are more active in DPA hydrogenation. The synthesized Pd-Ag catalysts are active and selective in PA hydrogenation as well, but the unfavorable ratio of the rates of the first and second stages of the process makes it difficult to kinetically control the reaction. The most promising results have been obtained for the Pd-Ag-2/alpha-Al2O3 catalyst. Although this catalyst is less active, it is very selective and allows efficient kinetic control of the process to be carried out owing to the fact that, with this catalyst, the rate of hydrogenation of the resulting styrene is much lower than the rate of hydrogenation of the initial PA.
机译:在苯乙烯(PA)和二苯基乙炔(DPA)的氢化中,在苯乙烯(PA)和二苯基乙炔(DPA)的氢化中进行了对PD-Ag双金属催化剂和商业Lindlar催化剂(PD-PB / CaCO 3)的对比催化研究。使用支持在MgAl2O4和氧化铝(α-Al2O3和γ-Al2O3)上负载的偏异二炔菊酯复合Pdag2(OAC)(4)(4)(HOAC)(4)制备Pd-Ag催化剂。物理化学研究已经证明,通过氢气的支持的PD-Ag复合物的还原导致均相PD-Ag纳米颗粒。与Lindlar催化剂的选择性相等,PD-Ag催化剂在DPA氢化中更活跃。合成的PD-Ag催化剂也是活性和选择性的PA氢化,但是该方法的第一和第二阶段的速率的不利比率使得难以动力学控制反应。已经获得了PD-AG-2 /α-Al2O3催化剂的最有希望的结果。虽然该催化剂的活性较低,但是它非常有选择性,并且允许由于该催化剂,所得苯乙烯的氢化速率远低于氢化速率的情况非常有选择性并且允许进行的方法进行高效的动力学控制初始pa。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号