Characterization of active sites working on FSM-16 during the vapor-phase Beckmann rearrangement of cyclohexanone oxime

被引:25
|
作者
Shouro, D [1 ]
Ohya, Y [1 ]
Mishima, S [1 ]
Nakajima, T [1 ]
机构
[1] Shinshu Univ, Grad Sch Sci & Technol, Nagano 3808553, Japan
关键词
ring opening of epsilon-caprolactam; deactivation; FSM-16; Beckmann rearrangement;
D O I
10.1016/S0926-860X(01)00479-3
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The behaviors of E-caprolactam, cyclohexanone oxime and Beckmann rearrangement by-products on FSM-16 and Al2O3/FSM-16 have been investigated in detail by means of TPD and reactions in the presence of organic acids and pyridine. The TPD spectra on FSM-16 of epsilon -caprolactam. cyclohexanone oxime, Beckmann rearrangement by-products and mixtures of by-products can be explained by postulating that there are four kinds of active sites, i.e. two kinds of nitrile formation sites (Sites A and R), a cyclohexanone formation site (Site B) and a nitrile adsorption site (Site alpha). The TPDs of cyclohexanone oxime adsorbed on Al2O3/FSM-16 in the presence and absence of water vapor suggest that the presence of water accelerates the formation of cyclohexanone on Site B. Addition of acetic acid suppresses conversion of epsilon -caprolactam to nitriles, and that addition of pyridine has no effect on the TPD spectrum. Addition of acetic acid to the reactant during the Beckmann rearrangement on Al2O3/FSM-16 improved the epsilon -caprolactam yield and catalyst's life. (C) 2001 Elsevier Science B,V. All rights reserved.
引用
收藏
页码:59 / 67
页数:9
相关论文
共 50 条
  • [21] Preparation of Nanosized Silicalite-1 and Its Application in Vapor-Phase Beckmann Rearrangement of Cyclohexanone Oxime
    Deng, Yi-Qiang
    Yin, Shuang-Feng
    Au, Chak-Tong
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2012, 51 (28) : 9492 - 9499
  • [22] Kinetic study on the effect of solvent in 'vapor-phase' Beckmann rearrangement of cyclohexanone oxime on silicalite-1
    Komatsu, T
    Maeda, T
    Yashima, T
    MICROPOROUS AND MESOPOROUS MATERIALS, 2000, 35-6 : 173 - 180
  • [23] Active and selective catalyst for liquid phase Beckmann rearrangement of cyclohexanone oxime
    Ngamcharussrivichai, C
    Wu, P
    Tatsumi, T
    JOURNAL OF CATALYSIS, 2005, 235 (01) : 139 - 149
  • [24] Active sites on SBA-15 in the Beckmann rearrangement of cyclohexanone oxime to ε-caprolactam
    Palkovits, Regina
    Yang, Chia-Min
    Olejnik, Stefan
    Schueth, Ferdi
    JOURNAL OF CATALYSIS, 2006, 243 (01) : 93 - 98
  • [25] Modulating the Microenvironment of Silanols in Pure-Silicon Zeolites for Boosting Vapor-phase Beckmann Rearrangement of Cyclohexanone Oxime
    Zhang, Peng
    Wang, Xiaoxu
    Yi, Xianfeng
    Ou, Qi
    Xia, Changjiu
    Peng, Xinxin
    Zhang, Xiaoxin
    Zheng, Anmin
    Luo, Yibin
    Shu, Xingtian
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (34) : 40478 - 40487
  • [26] Development of advanced zeolite catalysts for the vapor phase Beckmann rearrangement of cyclohexanone oxime
    Dai, LX
    Iwaki, Y
    Koyama, K
    Tatsumi, T
    APPLIED SURFACE SCIENCE, 1997, 121 : 335 - 338
  • [27] Vapor phase Beckmann rearrangement of cyclohexanone oxime over MCM-22
    Tsai, CC
    Zhong, CY
    Wang, I
    Liu, SB
    Chen, WH
    Tsai, TC
    APPLIED CATALYSIS A-GENERAL, 2004, 267 (1-2) : 87 - 94
  • [28] ALPO4-TIO2 CATALYSTS .5. VAPOR-PHASE BECKMANN REARRANGEMENT OF CYCLOHEXANONE OXIME
    BAUTISTA, FM
    CAMPELO, JM
    GARCIA, A
    LUNA, D
    MARINAS, JM
    MORENO, MS
    HETEROGENEOUS CATALYSIS AND FINE CHEMICALS III, 1993, 78 : 615 - 622
  • [29] Vapor phase beckmann rearrangement of cyclohexanone oxime over rare earth pyrophosphates
    Zhang, Zhen
    Li, Jing
    Yang, Xiangguang
    CATALYSIS LETTERS, 2007, 118 (3-4) : 300 - 305
  • [30] Vapor phase Beckmann rearrangement of cyclohexanone oxime on Hβ-zeolites treated by ammonia
    Zhang, Yongje
    Wang, Yaquan
    Bu, Yifeng
    MICROPOROUS AND MESOPOROUS MATERIALS, 2008, 107 (03) : 247 - 251