A simple and green technique has been developed to prepare hierarchical biomorphic ZrO2- CeO2, using silkworm silk as the template. Different from traditional immersion technics, the whole synthesis process depends mo...A simple and green technique has been developed to prepare hierarchical biomorphic ZrO2- CeO2, using silkworm silk as the template. Different from traditional immersion technics, the whole synthesis process depends more on the restriction or direction functions of the silkworm silk template. The analytic results showed that ZrO2-CeO2 exhibited a well-crystallized hierarchically interwoven hollow fiber structure with 16-28 μm in diameter. The grain size of the sample calcined at 800 ℃ was about 14 nm. Consequently, the interwoven meshwork at three dimensions is formed due to the direction of biotemplate. The action mechanism is summarily discussed here. It may bring the biomorphic ZrO2-CeO2 nanomaterials with hierarchical interwoven structures to more applications, such as catalysts.展开更多
A novel solid superacid catalyst S2O8^2-/ZrO2-CeO2 was prepared by a coprecipitation method and characterized by means of XRD FTIR, BET, TEM and DSC/TG analysis methods. The results indicated that incorporation of app...A novel solid superacid catalyst S2O8^2-/ZrO2-CeO2 was prepared by a coprecipitation method and characterized by means of XRD FTIR, BET, TEM and DSC/TG analysis methods. The results indicated that incorporation of appropriate amounts of Ce into the catalyst was beneficial to the formation of sole tetragonal ZrO2 and effectively prevented from the formation of monoclinic ZrO〉 and restrained the loss of sulfated species. XRD revealed the presence of tetragonal Ce0.16Zr0.84O2phase in the case of S2O8^2-/ZrO2-CeO2 calcined above 500 ℃. Catalytic activities of S2O8^2-/ZrO2-CeO2 for the esterification of lactic acid with n-butanol was studied. The results showed that the optimum conditions were as follows: calcination temperature of the catalyst 600 ℃, n(lactic acid):n(n-butyl alcohol)=1.0:3.0, w(S2O8^2-/ZrO2- CeO2)=12.0%, reaction temperature 145 ℃, and reaction time 2 h. The esterification efficiency of lactic acid was about 96.6%.展开更多
The mechanism of CO 2 methanation over Ru/ZrO 2 catalyst has been studied by means of diffuse reflectance infrared Fourier-transform spectroscopy. The results indicate that the formation of carbon-containing species o...The mechanism of CO 2 methanation over Ru/ZrO 2 catalyst has been studied by means of diffuse reflectance infrared Fourier-transform spectroscopy. The results indicate that the formation of carbon-containing species on the surface of catalyst is involved in the catalytic process. The adsorbed carbonate, formate and carbon monoxide can be detected on the surface of Ru/ZrO 2 catalyst. The surface carbonate and formate are much more abundant than the surface carbon monoxide. The surface carbonate and formate are main intermediates for the catalytic methanation of CO 2 over Ru/ZrO 2 catalyst, which can be directly hydrogenated to methane in the presence of hydrogen.展开更多
采用共沉淀法制备了ZrO2-CeO2颗粒载体,利用浸渍法制备了Ru/ZrO2-CeO2颗粒催化剂,采用BET、XRD、SEM、TEM等方法对其进行了结构表征,测定了其催化湿式氧化乙酸的活性,并以苯酚为模型物进行了动态试验.结果表明,Zr的添加抑制了CeO2晶粒...采用共沉淀法制备了ZrO2-CeO2颗粒载体,利用浸渍法制备了Ru/ZrO2-CeO2颗粒催化剂,采用BET、XRD、SEM、TEM等方法对其进行了结构表征,测定了其催化湿式氧化乙酸的活性,并以苯酚为模型物进行了动态试验.结果表明,Zr的添加抑制了CeO2晶粒的长大,增加了催化剂的抗热性能.当催化剂Zr、Ce摩尔比为1∶9,焙烧温度为300℃时催化剂活性最高,在200℃和4 MPa下,催化湿式氧化乙酸反应120 m in后,COD去除率可达99%.动态实验100 h内,苯酚与COD的去除率都保持在90%以上,催化剂具有很好的活性和稳定性.展开更多
文摘A simple and green technique has been developed to prepare hierarchical biomorphic ZrO2- CeO2, using silkworm silk as the template. Different from traditional immersion technics, the whole synthesis process depends more on the restriction or direction functions of the silkworm silk template. The analytic results showed that ZrO2-CeO2 exhibited a well-crystallized hierarchically interwoven hollow fiber structure with 16-28 μm in diameter. The grain size of the sample calcined at 800 ℃ was about 14 nm. Consequently, the interwoven meshwork at three dimensions is formed due to the direction of biotemplate. The action mechanism is summarily discussed here. It may bring the biomorphic ZrO2-CeO2 nanomaterials with hierarchical interwoven structures to more applications, such as catalysts.
基金supported by the Science and Technique Foundation of Shaaxi Province of China (2008K07-32)the Foundation of Shaanxi Educa- tional Committee of China (08JK228)the Graduate Innovation Fund of Shaanxi University of Science and Technology
文摘A novel solid superacid catalyst S2O8^2-/ZrO2-CeO2 was prepared by a coprecipitation method and characterized by means of XRD FTIR, BET, TEM and DSC/TG analysis methods. The results indicated that incorporation of appropriate amounts of Ce into the catalyst was beneficial to the formation of sole tetragonal ZrO2 and effectively prevented from the formation of monoclinic ZrO〉 and restrained the loss of sulfated species. XRD revealed the presence of tetragonal Ce0.16Zr0.84O2phase in the case of S2O8^2-/ZrO2-CeO2 calcined above 500 ℃. Catalytic activities of S2O8^2-/ZrO2-CeO2 for the esterification of lactic acid with n-butanol was studied. The results showed that the optimum conditions were as follows: calcination temperature of the catalyst 600 ℃, n(lactic acid):n(n-butyl alcohol)=1.0:3.0, w(S2O8^2-/ZrO2- CeO2)=12.0%, reaction temperature 145 ℃, and reaction time 2 h. The esterification efficiency of lactic acid was about 96.6%.
文摘The mechanism of CO 2 methanation over Ru/ZrO 2 catalyst has been studied by means of diffuse reflectance infrared Fourier-transform spectroscopy. The results indicate that the formation of carbon-containing species on the surface of catalyst is involved in the catalytic process. The adsorbed carbonate, formate and carbon monoxide can be detected on the surface of Ru/ZrO 2 catalyst. The surface carbonate and formate are much more abundant than the surface carbon monoxide. The surface carbonate and formate are main intermediates for the catalytic methanation of CO 2 over Ru/ZrO 2 catalyst, which can be directly hydrogenated to methane in the presence of hydrogen.
文摘采用共沉淀法制备了ZrO2-CeO2颗粒载体,利用浸渍法制备了Ru/ZrO2-CeO2颗粒催化剂,采用BET、XRD、SEM、TEM等方法对其进行了结构表征,测定了其催化湿式氧化乙酸的活性,并以苯酚为模型物进行了动态试验.结果表明,Zr的添加抑制了CeO2晶粒的长大,增加了催化剂的抗热性能.当催化剂Zr、Ce摩尔比为1∶9,焙烧温度为300℃时催化剂活性最高,在200℃和4 MPa下,催化湿式氧化乙酸反应120 m in后,COD去除率可达99%.动态实验100 h内,苯酚与COD的去除率都保持在90%以上,催化剂具有很好的活性和稳定性.