Chem. J. Chinese Universities ›› 2014, Vol. 35 ›› Issue (4): 812.doi: 10.7503/cjcu20131076

• Physical Chemistry • Previous Articles     Next Articles

Catalytic Combustion of Dichloromethane over Cr-13X and K-Cr-13X Zeolites Catalysts

ZHANG Lilei1,2, LIU Shaoying1,*(), LI Zijian1, YAO Jie1, WANG Gongying1,*()   

  1. 1. Chengdu Institute of Organic Chemistry, Chinese Academy of Sciences, Chengdu 610041, China
    2. University of Chinese Academy of Sciences, Beijing 100049, China
  • Received:2013-11-04 Online:2014-04-10 Published:2014-03-06
  • Contact: LIU Shaoying,WANG Gongying E-mail:syliu@cioc.ac.cn;gywang@cioc.ac.cn
  • Supported by:
    † Supported by the National High Technology Research and Development Program, China(No.2008AA062601).

Abstract:

Cr-13X and K-Cr-13X zeolites catalysts with different K and Cr contents were prepared by ion exchange method, and their catalytic performance for catalytic combustion of dichloromethane were evaluated in a conventional fixed bed reactor. Then, these catalysts were characterized via physicochemical techniques. The results showed that, when the Cr content was less than 5.19%, crystallinity of 13X zeolite was not affec-ted by the addition of K and Cr significantly. Cr addition not only enhanced the selectivity of CO2 product, but also eliminated CH3Cl by-products. The exchange of K with an appropriate amount enhanced the stability and activity of Cr-13X catalyst, as well as the selectivity of CO2 and HCl products. The enhancement of the catalytic activity and the products distribution could be accounted for the basis of oxidation and acidity of catalysts. On the condition of gas hourly space velocity of 1×104 h-1 and dichloromethane concentration of 5692 mg/m3, an optimal 1.31%K-5.01%Cr-13X catalyst was found with t50 at 212 ℃, t98 at 298 ℃ , CO2 selectivity at 60.6% and HCl selectivity at 96.5%, and this catalyst showed relatively stable catalytic activity during 100 h reaction.

Key words: Dichloromethane, Catalytic combustion, 13X zeolite, Potassium/chromium 13X zeolite

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