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改性Cs/γ-Al2O3催化乙酸乙酯和甲醛羟醛缩合制备丙烯酸乙酯的研究

摘要第5-6页
Abstract第6-7页
CHAPTER 1:INTRODUCTION第18-48页
    1.1 Acrylic acid and its derivative synthesis processes第19-25页
        1.1.1) Carbonylation of acetylene第20-21页
        1.1.2) Propane and propylene oxidation第21页
        1.1.3) Direct esterification第21-22页
        1.1.4) Aldol condensation of carboxylic acid and its ester第22-25页
    1.2 Catalysis and catalyst第25-33页
        1.2.1) Catalyst carriers (support materials)第28-31页
        1.2.2) Active phases第31-33页
    1.3 Catalyst preparation第33-36页
    1.4 Catalyst characterization methods第36-45页
        1.4.1) X-ray diffraction (XRD)第37-38页
        1.4.2) X-ray photoelectron spectroscopy (XPS)第38-39页
        1.4.3) Scanning electron microscopy (SEM)第39页
        1.4.4) Transmission electron microscopy (TEM)第39-40页
        1.4.5) Temperature programmed desorption (TPD)第40-42页
        1.4.6) Fourier transform infrared (FT-IR)第42页
        1.4.7) Surface area, pore diameter and pore volume analysis第42-44页
        1.4.8) Thermogravimetric analysis (TGA)第44-45页
    1.5 Aldol condensation reaction system第45-46页
    1.6 Research objectives第46-48页
CHAPTER 2: EXPERIMENTAL第48-54页
    2.1 Catalyst preparation第48-49页
    2.2 Catalyst characterization第49-51页
        2.2.1) X-ray diffraction (XRD)第49页
        2.2.2) X-ray photoelectron spectroscopy (XPS)第49页
        2.2.3) Scanning electron microscopy (SEM)第49-50页
        2.2.4) Transmission electron microscopy (TEM)第50页
        2.2.5) NH_3- Temperature-programmed desorption (NH_3-TPD)第50页
        2.2.6) CO_2- Temperature-programmed desorption (CO_2-TPD)第50页
        2.2.7) Pyridine Fourier transform infrared (Pyridine FT-IR)第50-51页
        2.2.8) N_2 adsorption-desorption第51页
        2.2.9) Thermogravimetric analysis (TGA)第51页
    2.3 Aldol condensation experimental set-up and activity performance第51-54页
        2.3.1) Equipment第51-52页
        2.3.2) Reaction procedure第52-54页
CHAPTER 3:PHOSPHORUS-CESIUM SUPPORTED ALUMINA CATALYST第54-72页
    3.1 Catalyst preparation第54-55页
    3.2 Catalyst characterization第55-66页
        3.2.1) X-ray diffraction (XRD)第55-56页
        3.2.2) X-ray photoelectron spectroscopy (XPS)第56-58页
        3.2.3) Scanning electron microscopy and energy dispersive spectroscopy (SEM-EDS)第58页
        3.2.4) NH_3- and CO_2- temperature program desorption (NH_3-and CO_2-TPD)第58-62页
        3.2.5) Pyridine Fourier transform infrared (Pyridine FT-IR)第62-63页
        3.2.6) N_2 adsorption-desorption第63-66页
    3.3 Aldol condensation activity performances第66-70页
        3.3.1) Effect of reactant ratio第66-67页
        3.3.2) Effect of Cs loading amount第67-69页
        3.3.3) Effect of P loading amount第69-70页
    3.4 Conclusions第70-72页
CHAPTER 4:METAL MODIFIED PHOSPHORUS-CESIUM SUPPORTED ALUMINACATALYST第72-97页
    4.1 Catalyst preparation第72-73页
    4.2 Catalyst characterization第73-83页
        4.2.1) X-ray diffraction (XRD)第73-74页
        4.2.2) X-ray photoelectron spectroscopy (XPS)第74-76页
        4.2.3) Scanning electron microscopy and energy dispersive spectroscopy (SEM-EDS)第76-78页
        4.2.4) Pyridine Fourier transform infrared (Pyridine FT-IR)第78-79页
        4.2.5) NH_3- and CO_2- temperature program desorption (NH_3- and CO_2- TPD)第79-81页
        4.2.6) N_2 adsorption-desorption第81-83页
    4.3 Aldol condensation activity performances第83-95页
        4.3.1) Effect of lanthanide metal addition第83-85页
        4.3.2) Effect of transition metal addition第85-91页
        4.3.3) Stability of catalysts第91-95页
    4.4 Conclusions第95-97页
CHAPTER 5:ZIRCONIUM MODIFIED PHOPHORUS-CESIUM SUPPORTEDALUMINA CATALYST第97-114页
    5.1 Catalyst preparation第97-98页
    5.2 Reactant and catalyst characterization第98-112页
        5.2.1) Characterization of the initial reagents第99-101页
        5.2.2) X-ray diffraction (XRD)第101-102页
        5.2.3) X-ray photoelectron spectroscopy (XPS)第102-103页
        5.2.4) Fourier transform infrared (FT-IR)第103-105页
        5.2.5) NH_3- and CO_2- temperature program desorption (NH_3- and CO_2-TPD)第105-107页
        5.2.6 ) N_2 adsorption-desorption第107-112页
        5.2.7) Scanning electron microscopy (SEM)第112页
    5.3 Conclusions第112-114页
CHAPTER 6: SCALE UP IN A MOVING BED REACTOR第114-123页
    6.1 Reaction procedure第114-115页
    6.2 Catalyst preparation第115-116页
    6.3 Catalyst characterization第116-120页
        6.3.1) X-ray diffraction (XRD)第116-117页
        6.3.2) X-ray photoelectron spectroscopy (XPS) 31006.3.3) Thermal gravimetric analysis (TGA)第117-118页
        6.3.3) Thermal gravimetric analysis (TGA)第118-119页
        6.3.4) Transmission electron microscopy and energy dispersive spectroscopy (TEM-EDS)第119-120页
    6.4 Aldol condensation activity第120-122页
    6.5 Conclusions第122-123页
CHAPTER 7:CONCLUSIONS AND RECOMMENDATIONS第123-127页
    7.1 Conclusions第123-126页
        7.1.1) The P-Cs/γ-Al_2O_3 catalyst第123-124页
        7.1.2) The M-P-Cs/γ-Al_2O_3 catalyst第124-126页
    7.2 Recommendations第126-127页
NOMENCLATURE第127-129页
REFERENCES第129-145页
APPENDIX第145-155页
CURRICULUM VITAE第155-159页
ACKNOWLEDGEMENTS第159页

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