Recently,a one-pot self-assembly method was proposed for the synthesis of mesoporous Al2O3 and MOx-Al2O3 composite materials.However,few attempts have been made to use mesoporous MOx-Al2O3 composites to support metal ...Recently,a one-pot self-assembly method was proposed for the synthesis of mesoporous Al2O3 and MOx-Al2O3 composite materials.However,few attempts have been made to use mesoporous MOx-Al2O3 composites to support metal oxides for catalysis.In the present work,mesoporous MOx-Al2O3(M = Mn,Fe,Co,Ni,Cu,Ba)materials were prepared by a one-pot self-assembly method using Pluronic P123 as a structure-directing agent.The obtained mesoporous materials were loaded with Rh2O3 nanoparticles via impregnation with Rh(NO3)3 followed by calcination in air at 500°C.The resulting catalysts were characterized by X-ray diffraction,N2 adsorption-desorption measurements,transmission electron microscopy,inductively coupled plasma optical emission spectrometry,X-ray photoelectron spectroscopy,and their catalytic activity and stability for CO oxidation and N2O decomposition were tested.The Rh2O3 nanoparticles were found to be on the order of1 nm in size and were highly dispersed on the high surface area mesoporous MOx-Al2O3 supports.A number of the Rh2O3/mesoporous MOx-Al2O3 catalysts exhibited higher catalytic activity than the Rh2O3/mesoporous Al2O3 prepared for comparison.展开更多
为了降低催化剂床层压降,提高Fe-β分子筛催化剂用于N_2O催化分解的能力,通过研究整体式分子筛催化剂制备方法,优化出最优原料配比为ω(拟薄水铝石)=40%,ω(硝酸)=8%,水粉比为0.6 m L·g^(-1)。研究了成型过程对分子筛催化剂结构及...为了降低催化剂床层压降,提高Fe-β分子筛催化剂用于N_2O催化分解的能力,通过研究整体式分子筛催化剂制备方法,优化出最优原料配比为ω(拟薄水铝石)=40%,ω(硝酸)=8%,水粉比为0.6 m L·g^(-1)。研究了成型过程对分子筛催化剂结构及性能的影响,并在不同孔密度分子筛催化剂、N_2O浓度和空速条件下考察N_2O分解反应性能。结果表明,在相同温度、空速和N_2O浓度下,分子筛催化剂的孔密度越高,催化活性呈增强趋势;对于相同孔密度的分子筛催化剂,随着空速的增加,相同温度下的N_2O转化率逐渐下降;对于相同孔密度的分子筛催化剂,在相同反应空速和温度下,随着N_2O浓度的增大,N_2O转化率呈上升趋势。展开更多
The fossil fuel consumption and pollutant emissions in a coal fired fluidized bed boiler could be reduced by biomass pyrolysis gas reburning.The influence of three kinds of biomass pyrolysis gases on the emission of N...The fossil fuel consumption and pollutant emissions in a coal fired fluidized bed boiler could be reduced by biomass pyrolysis gas reburning.The influence of three kinds of biomass pyrolysis gases on the emission of N_2O in a laboratory scale fluidized bed was investigated using the mechanism of GRI3.0 in this paper.The results showed that:the effect of sawdust pyrolysis gas reburning on N_2O was more significant than that of rice husk and orange peel under the same conditions;the increase of initial oxygen content from 1% to 8% in flue gas would restrain the decomposition of N_2O;the N_2O decomposition was enhanced by increasing reaction temperature from 1073.15 K to 1323.15 K,and the decomposition rate may reach 99% at 1223.15 K.展开更多
基金supported by the National Natural Science Foundation of China (21177028)~~国家自然科学基金(21177028)
文摘Recently,a one-pot self-assembly method was proposed for the synthesis of mesoporous Al2O3 and MOx-Al2O3 composite materials.However,few attempts have been made to use mesoporous MOx-Al2O3 composites to support metal oxides for catalysis.In the present work,mesoporous MOx-Al2O3(M = Mn,Fe,Co,Ni,Cu,Ba)materials were prepared by a one-pot self-assembly method using Pluronic P123 as a structure-directing agent.The obtained mesoporous materials were loaded with Rh2O3 nanoparticles via impregnation with Rh(NO3)3 followed by calcination in air at 500°C.The resulting catalysts were characterized by X-ray diffraction,N2 adsorption-desorption measurements,transmission electron microscopy,inductively coupled plasma optical emission spectrometry,X-ray photoelectron spectroscopy,and their catalytic activity and stability for CO oxidation and N2O decomposition were tested.The Rh2O3 nanoparticles were found to be on the order of1 nm in size and were highly dispersed on the high surface area mesoporous MOx-Al2O3 supports.A number of the Rh2O3/mesoporous MOx-Al2O3 catalysts exhibited higher catalytic activity than the Rh2O3/mesoporous Al2O3 prepared for comparison.
文摘为了降低催化剂床层压降,提高Fe-β分子筛催化剂用于N_2O催化分解的能力,通过研究整体式分子筛催化剂制备方法,优化出最优原料配比为ω(拟薄水铝石)=40%,ω(硝酸)=8%,水粉比为0.6 m L·g^(-1)。研究了成型过程对分子筛催化剂结构及性能的影响,并在不同孔密度分子筛催化剂、N_2O浓度和空速条件下考察N_2O分解反应性能。结果表明,在相同温度、空速和N_2O浓度下,分子筛催化剂的孔密度越高,催化活性呈增强趋势;对于相同孔密度的分子筛催化剂,随着空速的增加,相同温度下的N_2O转化率逐渐下降;对于相同孔密度的分子筛催化剂,在相同反应空速和温度下,随着N_2O浓度的增大,N_2O转化率呈上升趋势。
基金supported by the National Natural Science Foundation of China (50976032)the National High Technology Research and Development of China (2008AA05Z302)+4 种基金the National Basic Research Program of China (2009CB219801)the Key Project of Ministry of Education of China (108033,107119)Nature Science Foundation of Beijing (3101001)Fundamental Research Funds for the Central Universities (09ZG03)Doctoral Program of North China Electric Power University (200822015)
文摘The fossil fuel consumption and pollutant emissions in a coal fired fluidized bed boiler could be reduced by biomass pyrolysis gas reburning.The influence of three kinds of biomass pyrolysis gases on the emission of N_2O in a laboratory scale fluidized bed was investigated using the mechanism of GRI3.0 in this paper.The results showed that:the effect of sawdust pyrolysis gas reburning on N_2O was more significant than that of rice husk and orange peel under the same conditions;the increase of initial oxygen content from 1% to 8% in flue gas would restrain the decomposition of N_2O;the N_2O decomposition was enhanced by increasing reaction temperature from 1073.15 K to 1323.15 K,and the decomposition rate may reach 99% at 1223.15 K.