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Nanocrystalline titania was prepared by solvothermal reaction of titanium butoxide in toluene at 300 °C for 2 h. Thus obtained-powder was calcined at 300 °C in box furnace for 1 h and then quenched in various media at different temperature. The physiochemical properties of samples were investigated by using X-ray diffraction (XRD), nitrogen adsorption, CO2-Temperature Programmed Desorption (CO2-TPD), UV–visible scanning spectrophotometer, Transmission electron microscopy (TEM) and electron spin resonance spectroscopy (ESR) techniques. All physical properties such as phase, BET surface area and crystal size were not changed after quenching processes. While the CO2-TPD and ESR results indicate the changing of Ti3+ contents on the surface of TiO2 after quenching process. The amounts of Ti3+ increased as the quenching temperature decreased. Photocatalytic decomposition of water was carried out to evaluate the catalytic activity of quenched TiO2. The activity of quenched-powder increased corresponding to the increasing of Ti3+ contents increased by following order: air at 77 K > air at RT > air at 373 K > 30 wt% H2O2 at RT = 30 wt% H2O2 at 373 K > H2O at RT > H2O at 373 K.  相似文献   
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Separation of As(III) and As(V) ions from sulphate media by hollow fiber supported liquid membrane has been examined. Cyanex 923 was diluted in toluene and used as an extractant. Water was used as a stripping solution. The extractability of As(V) was higher than As(III). When the concentration of sulphuric acid in feed solution and Cyanex 923 in liquid membrane increased, more arsenic ions were extracted into liquid membrane and recovered into the stripping solution. The mathematical model was focused on the extraction side of the liquid membrane system. The mass transfer coefficients of the aqueous phase (k i ) and organic phase (k m ) are 7.15×10−3 and 3.45×10−2 cm/s for As(III), and 1.07×10−2 and 1.79×10−2 cm/s for As(V). Therefore, the rate-controlling step for As(III) and As(V) in liquid membrane process is the mass transfer in the aqueous film between the feed solution and liquid membrane. The calculated mass transfer coefficients agree with the experimental results.  相似文献   
3.
Effect of aging on the properties of mesoporous niobium oxide   总被引:1,自引:0,他引:1  
Using niobium(V) chloride and F127 in a water–ethanol system, this work reports the effect of aging of niobium-surfactant gel at 40 and 110 °C on the final product properties. The aging at low temperature of 40 °C showed small modification of the textural properties of the mesoporous niobium oxide. On the other hand, the hydrothermal aging at 110 °C showed significant increase in BET surface area, pore volume, pore size and microporosity with additional thermal and structural properties deviation. The process of hydrothermal aging at 110 °C is believed to lock chlorides in the niobium structure and cause the structural modification of the niobium skeleton leading to distinct developed crystalline structure and phase transformation behavior. The result also showed that hydrothermal aging at 110 °C could also enhance Lewis acidity of the product after calcination at 500 °C.  相似文献   
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