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高Cu含量MCM-41在苯直接羟基化反应中的催化性能
引用本文:蒋斯扬,孔岩,吴丞,徐铮,朱海洋,王春燕,王军,颜其洁.高Cu含量MCM-41在苯直接羟基化反应中的催化性能[J].催化学报,2006,27(5):421-426.
作者姓名:蒋斯扬  孔岩  吴丞  徐铮  朱海洋  王春燕  王军  颜其洁
作者单位:南京工业大学化学化工学院,省部共建材料化学工程教育部重点实验室,江苏南京,210009;南京大学化学化工学院,江苏南京,210093
摘    要: 考察了高铜含量(最高达26.0%)且铜原子主要处于中孔骨架的Cu-MCM-41在苯/过氧化氢直接羟基化制备苯酚反应中的催化性能,研究了铜含量、催化剂用量、溶剂种类、反应物摩尔比、温度以及时间等对催化剂活性的影响. 结果表明,该催化剂在苯直接羟基化反应中具有良好的催化活性,在最佳反应条件下,可使苯转化率达52.9%, 苯酚选择性达58.9%, 苯酚收率达31.2%, 优于文献报道的低铜含量中孔分子筛的催化结果. 另外,从反应机理对影响反应的因素进行了初步探讨.

关 键 词:Cu-MCM-41分子筛    过氧化氢  羟基化  苯酚
文章编号:0253-9837(2006)05-0421-06
收稿时间:11 1 2005 12:00AM
修稿时间:2005-11-01

Catalytic Performance of Cu-MCM-41 with High Copper Content for the Direct Hydroxylation of Benzene to Phenol
JIANG Siyang,KONG Yan,WU Cheng,XU Zheng,ZHU Haiyang,WANG Chunyan,WANG Jun,YAN Qijie.Catalytic Performance of Cu-MCM-41 with High Copper Content for the Direct Hydroxylation of Benzene to Phenol[J].Chinese Journal of Catalysis,2006,27(5):421-426.
Authors:JIANG Siyang  KONG Yan  WU Cheng  XU Zheng  ZHU Haiyang  WANG Chunyan  WANG Jun  YAN Qijie
Institution:1.Key Laboratory of Material-Oriented Chemical Engineering of Jiangsu Province and MOE, College of Chemistry and Chemical Engineering, Nanjing University of Technology, Nanjing 210009, jiangsu , China ; 2.Department of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, Jiangsu , China
Abstract:Cu-MCM-41 catalysts in which the copper content could be up to 26.0% and most of the copper atoms were incorporated into the silica framework were prepared. They exhibited high catalytic activity for direct hydroxylation of benzene with H_2O_2. Under the optimal reaction conditions, a 52.9% conversion of benzene and 31.2% yield of phenol were obtained, which was higher than the catalysts reported in the literature using other mesoporous materials with low copper content. The influence of various reaction parameters such as the copper content, the molar ratio of H_2O_2/benzene, the amount of catalyst, solvents, and the reaction temperature on the catalytic activity was studied and discussed in accordance with the reaction mechanism.
Keywords:Cu-MCM-41 molecular sieve  benzene  hydrogen peroxide  hydroxylation  phenol
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