Hydrogenolysis of biodiesel-derived glycerol to value-added chemicals has emerged as an innovative approach to biowaste valorization for a more sustainable society. In the present work, Ru catalysts on Al2O3/AlF3 supports with different AlF3 content were prepared by the aqueous incipient wetness method and tested in the reaction of glycerol hydrogenolysis for the first time. The prepared catalysts were characterized by neutron activation analysis, N-2 physisorption, and H-2 chemisorption techniques. The catalytic hydrogenation of crude glycerol was performed at a temperature of 473 K and a hydrogen pressure of 4.0 MPa, using a 5 wt % glycerol aqueous solution for 4 h with comprehensive characterization of liquid- and gas-phase products. Texture, structure, and activity of the prepared catalysts were significantly affected by the fluoridation. To understand the mechanism of possible reactions for glycerol hydrogenolysis better, the effects of pH and individual hydrogenolysis of most of the products of the glycerol reaction were investigated.
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Pilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, BrazilPilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, Brazil
Silveira Junior, Euripedes G.
Perez, Victor Haber
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Pilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, BrazilPilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, Brazil
Perez, Victor Haber
Reyero, Ines
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Univ Publ Navarra, Dept Appl Chem, Campus Arrosadia, Pamplona, SpainPilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, Brazil
Reyero, Ines
Serrano-Lotina, Ana
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CSIC, Inst Catalysis & Petrochem, Campus Autonomous Univ Madrid, Madrid, SpainPilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, Brazil
Serrano-Lotina, Ana
Justo, Oselys Rodriguez
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Estacio de Sa Univ, Environm Sch, Campos Dos Goytacazes, RJ, BrazilPilot Plant State Univ Northern Rio de Janeiro, Proc Engn Sect, Rio De Janeiro, Brazil
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College of Chemical Engineering, Beijing Institute of Petrochemical TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology
Zhang Lanxi
Cao Yongzheng
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College of Chemical Engineering, Beijing Institute of Petrochemical TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology
Cao Yongzheng
Wang Huiguo
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College of Chemical Engineering, Beijing Institute of Petrochemical TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology
Wang Huiguo
Li Ning
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College of Chemical Engineering, Beijing Institute of Petrochemical TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology
Li Ning
Luo Guohua
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College of Chemical Engineering, Beijing Institute of Petrochemical Technology
Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology
Luo Guohua
Xu Xin
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College of Chemical Engineering, Beijing Institute of Petrochemical Technology
Beijing Key Laboratory of Fuels Cleaning and Advanced Catalytic Emission Reduction TechnologyCollege of Chemical Engineering, Beijing Institute of Petrochemical Technology