Volume 34 Issue 05
Oct.  2006
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XIANG Ming-lin, LI De-bao, XIAO Hai-cheng, QI Hui-jie, LI Wen-huai, ZHONG Bing, SUN Yu-han. 新型K/αMoC 1-x 催化剂CO加氢合成低碳混合醇的研究[J]. Journal of Fuel Chemistry and Technology, 2006, 34(05): 595-599.
Citation: XIANG Ming-lin, LI De-bao, XIAO Hai-cheng, QI Hui-jie, LI Wen-huai, ZHONG Bing, SUN Yu-han. 新型K/αMoC 1-x 催化剂CO加氢合成低碳混合醇的研究[J]. Journal of Fuel Chemistry and Technology, 2006, 34(05): 595-599.

新型K/αMoC 1-x 催化剂CO加氢合成低碳混合醇的研究

  • Received Date: 2006-01-09
  • Rev Recd Date: 2006-05-11
  • Publish Date: 2006-10-30
  • αMoC1-xpromoted by K2CO3, was studied as catalysts for carbon monoxide hydrogenation reactions under conditions of 573, 8.0MPa, GHSV=2000h-1,n(H2)/n(CO)=1.0. Unpromoted αMoC1-xproduced mainly CO2 and light hydrocarbons, addition of K2CO3 as a promoter, however, resulted in remarkable selectivity shift from hydrocarbons to alcohols. Moreover, the promoter of potassium enhanced the ability of chain propagation of αMoC1-xwith higher selectivity of C2+OH. The investigations of the effects of the loadings of K2CO3 in αMoC1-xrevealed that the maximum yield of alcohols was obtained at K/Mo (mol ratio) =0.1. However, there was no significant difference between αMoC1-xand K/αMoC1-xcatalysts in the distributions of alcohols and hydrocarbons; they both have similar linear A-S-F plots. Though, the promotion effects of potassium on the formation of higher alcohols could be attributed to the formation of "K-Mo-C" phase in K/αMoC1-xcatalysts, which was considered to be the active sites for the alcohols synthesis.
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