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Caprolactam Synthesis using Ce-MCM-41Catalysts

초록

영어

Siliceous MCM-41 was synthesized by hydrothermal method using sodiummetasilicate as a source. Cerium ion incorporated Si-MCM-41 was synthesized by hydrothermal method using Cetyltrimethylammonium bromide as template. 2, 3 and 4 weight percentage of Ceria was loaded over MCM-41 by wet impregnation method. The synthesized catalysts were characterized using FT-IR, DRS-UV-Vis, XRD and SEM techniques. The catalytic activity of the cerium ion incorporated and ceria impregnated MCM-41 was evaluated in the synthesis of caprolactam from cyclohexanone oxime in the liquid phase condition. At high temperature all the catalyst showed high conversion. In that 4 wt.% Ce impregnated Si-MCM-41 produced high conversion (76.2%) and percentage yield (66.4%). The impregnated catalyst may contain more number of cerium present in the pores, so the lewis acid sites will be more and the conversion of cyclohexanone oxime into caprolactam will be high.

목차

Abstract
 1. Introduction
 2. Experimental
  2.1. Materials 
  2.2. Characterization Techniques
  2.3. Synthesis of Si-MCM-41 and Ce-MCM-41 
  2.4. Synthesis of Ceria Impregnated MCM-41 
 3. Results and Discussion
  3.1. X -ray Diffraction Studies
  3.2. FT-IR Spectroscopy
  3.3. Scanning Electron Microscopy
  3.4. DRs-UV Spectroscopy
  3.5. Catalytic Activity
 4. Conclusions
 Acknowledgments
 References

저자정보

  • Cadiam Mohan Babu Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea
  • Rajangam Vinodh Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea
  • Aziz Abidov Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea
  • Rramaswamy Ravikumar Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea
  • Mei Mei Peng Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea
  • Wang Seog Cha Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea, School of Civil and Environmental Engineering, Kunsan National University, Kunsan 573-701, South Korea
  • Hyun Tae Jang Department of Chemical Engineering, Hanseo University, Korea Carbon Capture and Sequestration R and D Centre, 360 Daegok-ri, Haemi-myun, Seosan-si 356 706, Chungcheongnam-do, South Korea

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