应用化学 ›› 2017, Vol. 34 ›› Issue (2): 242-244.DOI: 10.11944/j.issn.1000-0518.2017.02.160251

• 研究简报 • 上一篇    

四氯化碳液相催化加氢制氯仿多元金属催化剂的制备及其催化性能

朱一明,张豪,张军(),米刚,宋帮才,杜西刚   

  1. 河南科技大学化工与制药学院 河南 洛阳 471203
  • 收稿日期:2016-06-15 接受日期:2016-08-09 出版日期:2017-01-18 发布日期:2017-01-18
  • 通讯作者: 张军
  • 基金资助:
    国家自然科学基金资助项目(21576073,21076063)

Preparation and Catalytic Performance Evaluation of Multi-metal Catalysts for Conversion of Tetrachloromethaneto Trichloromethane by Liquid Phase Hydrogenation

ZHU Yiming,ZHANG Hao,ZHANG Jun(),MI Gang,SONG Bangcai,DU Xigang   

  1. Chemical Engineering & Pharmaceutics School,He'nan University of Science & Technology,Luoyang,He'nan 471023,China
  • Received:2016-06-15 Accepted:2016-08-09 Published:2017-01-18 Online:2017-01-18
  • Contact: ZHANG Jun
  • Supported by:
    Supported by the National Natural Science Foundation of China(No.21576073, No.21076063)

摘要:

以贵金属M(=Pd,Pt)为主要活性成分,掺加过渡金属Fe和Ni作为助剂,采取浸渍和氢气还原法制备了椰壳活性炭(ACcs)负载的单元金属(M/ACcs)、二元金属(M-Ni/ACcs、M-Fe/ACcs)和三元金属(M-Ni-Fe/ACcs)系列催化剂;通过CCl4液相催化加氢制氯仿反应考察了这些催化剂的催化活性和选择性。 结果表明,Pd基催化剂的催化活性明显高于Pt基催化剂,但后者对氯仿的选择性优于前者;在前5 h加氢反应时段,两系列催化剂的活性顺序为:Pd-Ni-Fe/ACcs>Pd-Fe/ACcs>Pd/ACcs>Pd-Ni/ACcs和Pt/ACcs≈Pt-Fe/ACcs>Pt-Ni/ACcs>Pt-Ni-Fe/ACcs;总体上,引入Fe对于催化性能的改善效果要优于Ni,Ni的单独引入则会不同程度地降低催化活性。 综合考量成本、活性和选择性等因素,优选Pd-Ni-Fe/ACcs作为催化剂,在393 K下反应5 h,可实现CCl4 97.6%的转化率以及接近100%氯仿的选择性。

关键词: 四氯化碳, 氯仿, 液相加氢, Pd/Pt催化剂, 催化性能, 转化率

Abstract:

By using Pd/Pt as main active ingredients and Fe/Ni as auxiliary, coconut shell activated carbon(ACcs) loaded mono metal(M/ACcs), binary metal(M-Ni/ACcs, M-Fe/ACcs) and ternary metal(M-Ni-Fe/ACcs) catalysts have been prepared via metal impregnation and H2 reduction. The catalytic activity and selectivity of the catalysts for conversion of CCl4 to CHCl3 by liquid-phase hydrogenation was evaluated. Compared with Pt-based catalysts, the Pd-based counterparts have higher activity, but lower CHCl3 selectivity. During initial reaction time of 5 h, the catalytic activity order follows:Pd-Ni-Fe/ACcs>Pd-Fe/ACcs>Pd/ACcs>Pd-Ni/ACcs and Pt/ACcs≈Pt-Fe/ACcs>Pt-Ni/ACcs>Pt-Ni-Fe/ACcs. Addition of Fe component improves the activity while single addition of Ni lowers the catalytic performance. The Pd-Ni-Fe/ACcs catalyst can realize more than 97% conversion of CCl4 and nearly 100% selectivity for CHCl3 at 393 K for 5 h.

Key words: tetrachloromethane, trichloromethane, liquid-phase hydrogenation, Pd/Pt catalysts, catalytic performance, conversion rate