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作 者:Mohammad Sadiq Razia Aman Saddam Hussain Muhammad Abid Zia Najeeb Ur Rahman Mohammad Saeed
机构地区:[1]Department of Chemistry, University of Malakand, Khyber Pakhtunkhwa, Pakistan [2]Department of Chemistry, University of Education, Attock Campus, Attock, Pakistan [3]Department of Chemistry, GC University, Faisalabad, Pakistan
出 处:《Modern Research in Catalysis》2015年第1期28-35,共8页催化剂现代研究(英文)
摘 要:Iron oxide nanoparticles were synthesized by precipitation method and supported on activated carbon. The catalyst thus obtained was characterized by various physicochemical techniques, and used for the liquid phase dehydrogenation/oxidation of octanol in a batch reactor at various temperatures in the range 30 °C - 60 °C. Maximum conversion of octanol to octanal was attained at 60°C in 30 min. However, with longer reaction time, the selectivity of the catalyst was found to change in favor of octene as a product. The catalyst could be recovered and reused multiple times without any decline in its catalytic performance.Iron oxide nanoparticles were synthesized by precipitation method and supported on activated carbon. The catalyst thus obtained was characterized by various physicochemical techniques, and used for the liquid phase dehydrogenation/oxidation of octanol in a batch reactor at various temperatures in the range 30 °C - 60 °C. Maximum conversion of octanol to octanal was attained at 60°C in 30 min. However, with longer reaction time, the selectivity of the catalyst was found to change in favor of octene as a product. The catalyst could be recovered and reused multiple times without any decline in its catalytic performance.
关 键 词:LIQUID Phase OXIDATION DEHYDRATION OCTANOL
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