アジア・太平洋化学工学会議発表論文要旨集
Asian Pacific Confederation of Chemical Engineers congress program and abstracts
セッションID: 1P-08-009
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Effect of Al2O3 Addition on Catalytic Activities of NiSO4/Al2O3-ZrO2 for Acid Catalysis
Mu Hee BaeEun Suk ChoYoung Tae KimJun Seob LimJong Rack Sohn
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The NiSO4/Al2O3-ZrO2 catalysts containing different nickel sulfate contents were prepared by the impregnation method, where support, Al2O3-ZrO2 was prepared by the coprecipitation method using a mixed aqueous solution of zirconium oxychloride and aluminum nitrate solution followed by adding an aqueous ammonia solution. No diffraction line of nickel sulfate was observed up to 20 wt%, indicating good dispersion of nickel sulfate on the surface of Al2O3-ZrO2. The addition of nickel sulfate (or Al2O3) to ZrO2 shifted the phase transition of ZrO2 from amorphous to tetragonal to higher temperatures because of the interaction between nickel sulfate (or Al2O3) and ZrO2. 10-NiSO4/Al2O3-ZrO2 containing 10 wt% NiSO4 and 5 mole% Al2O3, and calcined at 700°C exhibited maximum catalytic activities for both reactions, ethylene dimerization and cumene dealkylation. NiSO4/Al2O3-ZrO2 catalysts was very effective for ethylene dimerization even at room temperature, but Al2O3-ZrO2 without NiSO4 did not exhibit any catalytic activity at all. The catalytic activities for both reactions were correlated with the acidity of catalysts measured by the ammonia chemisorption method. The addition of Al2O3 up to 5 mole% enhanced the acidity, surface area, thermal property, and catalytic activities of NiSO4/Al2O3-ZrO2 gradually due to the interaction between Al2O3 and ZrO2 and consequent formation of Al-O-Zr bond.
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© 2004 The Society of Chemical Engineers, Japan
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