Sitemap  |  Home  |  Contact  |  CAS  |      中文
 
 
  ·About us
  ·Research
  ·People
  ·International Cooperation
  ·News
  ·Papers of Tribology
  ·Papers of Journal of Molecular Catalysis
  ·Papers of Analysis and Testing Technology and Instruments
  ·Resources
  ·Education & Training
  ·Join Us
  ·Societies & Publications
  ·Papers
  ·Links
  ·Sitemap

Location: Home>Papers of Journal of Molecular Catalysis
Effects of synthesis conditions on catalytic performance of Cu-ZnO-MnOx /Al2O3 catalyst during hydrogenolysis of α, α-dimethyl-benzyl alcohol
2010-11-22 ArticleSource:
Close Text Size: A A A Print

Wang Hui, Ma Jingmeng , Wang Deju, Guo Youdi, Liu Zhongneng

(Shanghai Research Institute of Petrochemical Technology, SINOPEC, Shanghai 201208,China)

Abstract: Cu-ZnO-MnOx/Al2O3 catalyst was prepared by a deposition-precipitation method and used in hydrogenolysis of α, α-dimethyl-benzyl alcohol to cumene. Various techniques including: X-ray diffraction, N2 adsorption-desorption, scanning electron microscopy and ICP were employed for characterizing the physico-chemical properties of this kind of catalyst. The effects of synthesis conditions such as pH value, deposition temperature, aging time, and calcinations temperature on catalytic performance were studied in detail. The results indicating that the pH value and aging time mainly affected the the rate of phase changing as well as the rate of substitution between Cu2+ and Zn2 + , the calcination temperature was affected the decomposition of precursor and the size of the catalyst. (Cu0.3Zn0.7)5 (CO3)2 (OH)6 and (CuZn)2(CO3)(OH)2 in the precursors were the vital phase in correspondence with the high activity of the catalyst. In addition, it seems that the CuO-ZnO solid-solution originating from the decomposition of (Cu0.3Zn0.7)5(CO3)2(OH)6 has higher catalytic activity than it counterpart originating from (CuZn)2CO3(OH)2.

Key words: Cu catalyst; α, α-dimethyl-benzyl alcohol; Synthesis conditions; Catalytic hydrogenolysis

E-mail: wanghuish.sript@163.com

Journal of Molecular Catalysis, Vol. 24, Issue 5, 2010, 422~427

Address: No.18,Tianshui Middle Road,Lanzhou,P.R.China
ZIP Code:730000 Tel: 86-0931-4968009  Fax: 86-0931-8277088
E-mail: webeditor@licp.cas.cn