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1.
PdO/纳米Ce0.6Zr0.35Y0.05O2上甲烷催化氧化性能研究   总被引:2,自引:0,他引:2  
采用以十六烷基三甲基溴化铵(CTAB)为模板剂的改进共沉淀法合成了高比表面积(129 m2·g-1)立方相Ce0.6Zr0.35Y0.05O2(CZY(CTAB)固溶体"菜花"状纳米粒子,并以此为载体利用浸渍法制备了PdO含量为4%~10%的催化剂,考察了其对甲烷氧化反应的催化活性.结果表明,4%~10%PdO/CZY(CTAB表现出很好的催化活性在CH4/O2摩尔比1/4,空速50000 h-1和温度360 ℃的反应条件下,甲烷完全氧化成二氧化碳和水.以CZY-CTAB固溶体纳米粒子作载体担载PdO,可大大地减小甲烷转化率随温度变化的"滞后回线"现象.根据表征结果,认为这一优良催化性能与铈锆钇固溶体对活性相PdO的稳定作用及其较大的比表面积有关.  相似文献   

2.
以聚乙烯合丁烯-嵌-聚氧乙烯嵌段共聚物(PHB-PEO)作模板, 采用蒸发诱导自组装方法, 分别制备了Y2O3和Nd2O3介孔薄膜. 用小角、广角X射线衍射和透射电子显微镜对薄膜样品在不同的热处理阶段进行了表征. 结果表明, 所制备的Y2O3和Nd2O3薄膜样品呈现一种大孔径(平均孔径分别约为11.5和12.5 nm)、有序的立方扭曲球形孔排列、稳定于450 ℃并具有部分晶态孔壁结构的介孔薄膜材料.  相似文献   

3.
贯通孔道网络结构大孔Al2O3催化材料的制备   总被引:2,自引:0,他引:2  
采用模板法制备了具有贯通孔道网络结构的大孔Al2O3催化材料. 为确保模板材料的体积分数低于74%时Al2O3孔道的贯通, 设计并实现了模板聚苯乙烯(PS)微球先胶凝再与催化材料Al2O3纳米颗粒复合的制备路线. 通过PS微球悬浮液的流变性表征凝胶状态的形成. 实验结果表明, 加入适当浓度的硝酸铝溶液后PS微球悬浮液出现了由溶胶向凝胶的转变. 通过扫描电镜对大孔Al2O3催化材料的孔道结构进行表征, 结果表明, 与有序大孔材料相比大孔催化材料中孔配位数有所降低, 骨架厚度提高且具有贯通的孔道网络结构. 大孔结构抗压强度实验表明, 随着模板PS微球质量分数的降低, 机械强度明显提高.  相似文献   

4.
在Mn含量不变的条件下, 通过调变前驱体Mn(NO3)2与KMnO4的添加量, 以共沉淀法制备了改进的MnOx-CeO2催化剂, 采用XRD, LRS, XPS和TPR测试手段对催化剂进行了表征, 并研究了对甲烷催化燃烧的低温性能.  相似文献   

5.
通过共沉淀法制备铈锆固溶体作为载体,采用等体积、分步浸渍的方法制备了一系列10% Ni-3% La/CexZr1-xO2(X=0、0.16、0.5、0.75、1)催化剂,并将其应用到甲烷部分氧化和甲烷二氧化碳重整耦合制合成气的反应中。对不同Ce/Zr比的催化剂性能展开研究,采用XRD、H2-TPR、SEM手段对载体及催化剂进行了表征。结果表明,铈锆固溶体的形成不仅提高了催化剂表面活性组分的分散度,使催化剂表面NiO晶粒尺寸从26.5 nm减到13.7 nm;而且能够加强活性组分与载体之间的相互作用,提高催化剂的热稳定性能;随着Ce/Zr比的增加,催化剂的转化率、选择性及稳定性随之增强,其关系为:Ni-La/Ce0.75Zr0.25O2 > Ni-La/Ce0.5Zr0.5O2 > Ni-La/Ce0.16Zr0.84O2。  相似文献   

6.
利用高分子反相悬浮聚合技术结合溶胶-凝胶法制备了纳米TiO2晶粒组成的多孔微球. 以TiO2多孔微球为载体, 利用浸渍法制备了CuO/TiO2催化剂, 用示差扫描量热法、热重分析、X 射线衍射和X射线光电子能谱(XPS)对TiO2多孔微球和催化剂进行了表征, 并对其进行了CO催化氧化性能的评价. 结果表明, 于500 ℃焙烧的TiO2多孔微球基本为锐钛矿型结构, 其粒径为19.5 nm. XPS结果表明, 催化剂中载体和活性组分存在相互作用, Cu除了以Cu2+的形式存在外, 还以部分Cu+和Cu0的形式存在. CO催化氧化研究结果表明, 催化剂的催化活性与浸渍液的浓度和催化剂的焙烧温度有关. 用0.5 mol/L Cu(NO3)2·3H2O溶液浸渍得到的催化剂和于200 ℃焙烧得到的催化剂具有较好的催化活性.  相似文献   

7.
以广义酸-碱对理论为依据,报道了一种仅利用纯无机碱和盐为原料在蜂窝陶瓷载体上制备介孔MgAl2O4涂层的方法,并通过原位酸碱反应对涂层进行CexZr1-xO2修饰和Pt的负载,成功制备出具有高催化活性的整体式氢气燃烧催化剂.通过扫描电子显微镜(SEM),X射线衍射仪(XRD)以及N2吸/脱附分析仪表征了催化剂的微观结构.结果表明复合涂层不仅具有均匀的微晶结构,而且具有高的比表面积(>250m2·g-1)和大的孔容(0.32cm3·g-1).氢气催化燃烧反应结果显示,制备的整体式催化剂具有很高的催化活性,可以在室温下快速起燃,并且氢气的初始转化率达到95%以上.  相似文献   

8.
以硝酸亚铈(Ce(NO33·6H2O)和正硅酸四乙酯(C8H20O4Si)为前驱体,采用溶胶-凝胶法合成了系列具有大比表面积的xCeO2-(1-x)SiO2(x = 0,0.25,0.50,0.75,1)复合氧化物载体,然后浸渍活性组分Ni制得用于甲烷部分氧化制合成气的Ni催化剂。运用N2物理吸附-脱附、X射线粉末衍射、扫描电镜、紫外-可见漫反射光谱、氢程序升温还原、氨程序升温脱附和热重等手段对所得催化剂的组织结构、还原性、表面酸性和积炭行为等进行了表征;同时考察了催化剂的组成、焙烧温度和反应时间等对催化剂在甲烷部分氧化制合成气中催化性能的影响。表征结果表明,该系列Ni/CeO2-SiO2催化剂具有大比表面积,CeO2晶粒较小,NiO的分散性好且易被还原,表面酸性弱,不容易积炭。当Ce/Si摩尔比为1:1,活性组分Ni的质量分数为10%,焙烧温度为700℃时,所制备的Ni/CeO2-SiO2催化剂表现出较好的稳定性、最高的CH4转化率(~84%)和对产物CO及H2的选择性(>87%)。  相似文献   

9.
采用共沉淀法制备了ZrxCe1-xO2催化剂, 利用BET, XRD和XPS对其进行了表征, 并研究了催化剂催化湿式氧化乙酸的活性. 结果表明: Zr和Ce摩尔比为1∶9的催化剂催化湿式氧化乙酸时具有最好的活性, 当乙酸溶液的初始化学需氧量(COD)为5000 mg/L, 反应温度为230 ℃, 压力为5 MPa时, 120 min后, COD的去除率为76% . 催化剂具有良好的活性是因为在CeO2中加入Zr能够增大催化剂的比表面积和表面缺陷氧的含量, 并最终加快了HO2•自由基的产生, 从而提高了催化剂的活性.  相似文献   

10.
张鑫  徐柏庆 《化学学报》2005,63(1):86-90
从同一ZrO(OH)2出发制备了三种不同尺寸的ZrO2纳米颗粒(ZrO2-CP: 40~200 nm, ZrO2-AN: 18~25 nm, ZrO2-AD: 10~15 nm), 采用沉积-沉淀方法制备了相应的Au/ZrO2催化剂. 用XRD, XRF, TEM和低温N2吸附对ZrO2和Au/ZrO2进行了表征. XRD和TEM分析表明Au/ZrO2样品中Au粒子的平均尺寸为4~5 nm, 而ZrO2的晶相和颗粒大小没有因为“负载”Au粒子而发生变化. CO催化氧化反应的结果表明, Au/ZrO2催化活性随着ZrO2纳米粒子尺寸的减小活性明显增加. TEM/HRTEM结果表明, Au/ZrO2催化剂中Au粒子与ZrO2颗粒接触界面随ZrO2颗粒尺寸的减小而明显增加, 这很可能是含有更小尺寸ZrO2纳米粒子的Au/ZrO2催化剂具有更高催化活性的重要原因.  相似文献   

11.
测定了在Ce0.6Zr0.4O2,Ce0.6Zr0.35Y0.05O2,Pr0.6Zr0.4O2和Pr0.6Zr0.35Y0.05O2 (分别表示为CZ,CYZ,PZ和PYZ)样品表面上的CO氧化反应和18O-16O 同位素交换反应.结果表明: 在CZ和PZ系列固熔中掺杂Y3 离子可以改善晶格氧的迁移速度;PZ和PZY的晶格氧比CZ 和CZY 的晶格氧具有更高的氧化反应活性.其原因是将Y3 掺杂到Ce0.6Zr0.4O2 或Pr0.6Zr0.4O2晶格中,增加了样品的氧空位浓度,从而提高了晶格氧的迁移性质,而PrOx比CeO2具有更低温度的氧化还原性质,因此PZ和PZY的晶格氧比CZ 和CZY 的晶格氧具有更高的氧化反应活性.  相似文献   

12.
Volatile organic compounds (VOCs) are both harmful to human health and the environment; however, catalytic combustion offers a promising method for VOC purification because of its high efficiency without secondary pollution. Although manganese-based catalysts have been well studied for VOC catalytic oxidation, their catalytic activity at low temperature must be improved. Alkali metals as promoters have the potential to modulate the electronic and structural properties of the catalysts, improving their catalytic activity. Herein, a Ce0.65Zr0.35O2 support was prepared by co-precipitation and MnOx/Ce0.65Zr0.35O2 catalysts were obtained through the incipient-wetness impregnation method. The catalytic properties of K-modified MnOx/Ce0.65Zr0.35O2 for toluene oxidation with different molar ratios of K/Mn were investigated. In addition, the catalysts were characterized by XRD, UV/visible Raman, Hydrogen temperature program reduction (H2-TPR), Oxygen temperature programmed desorption (O2-TPD), X-ray photoelectron spectroscopy (XPS) and in situ diffuse reflectance FTIR spectroscopy (DRIFTS) experiments. The results showed that alkali metal doping with K significantly improved the catalytic activity. In particular, when the molar ratio of K/Mn was 0.2, the monolith catalyst Mn/Ce0.65Zr0.35O2-K-0.2 exhibited the best performance with the lowest complete conversion temperature T90 of 242 ℃ at a GHSV of 12000 h−1. The XRD results suggested that MnOx was uniformly distributed on the surface of the catalyst and that Mn4+ partially reduced to Mn3+ on the addition of K. The Raman spectrum demonstrated that with increasing K content, both the β- and α-MnO2 phases coexisted on the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst, increasing the number of surface defect sites. The H2-TPR experiment results confirmed that Mn/Ce0.65Zr0.35O2-K-0.2 exhibited the lowest reduction temperature and good reducibility. From the O2-TPD experiments, it was clear that Mn/Ce0.65Zr0.35O2-K-0.2 contained the most surface adsorbed oxygen species and excellent lattice oxygen mobility, which benefitted the toluene oxidation activity. In addition, the XPS results suggested that the content of surface adsorbed oxygen species of the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst was the highest among all the tested samples. In addition, toluene-TPSR in N2 as measured by in situ DRIFTs analysis demonstrated that available lattice oxygen was present in the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst. Therefore, the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst exhibited the best redox properties and oxygen mobility of the prepared samples and showed excellent activity toward toluene oxidation. Therefore, it was concluded that the addition of an appropriate amount of K improved the redox performance of the catalyst and increased the number of surface defect sites and mobility of the lattice oxygen of the catalyst as well as the concentration of the surface active oxygen species, thereby significantly improving catalytic ability.  相似文献   

13.
In this study,the effect of Nb loading on the catalytic activity of Ce_(0.75)Zr_(0.25)O_2-supported Ni catalysts was studied for methane partial oxidation.The catalysts were characterized by BET,H_2 chemisorption,XRD,TPR,TEM and tested for methane partial oxidation to syngas in the temperature range of 400-800℃at atmospheric pressure.The results showed that the activity of methane partial oxidation on the catalysts was apparently dependent on Nb loading.It seemed that the addition of Nb lowered the catalytic activity for methane partial oxidation and increased the extent of carbon deposition. This might be due to the strong interaction between NiO and Nb-modified support and reduction of surface oxygen reducibility.  相似文献   

14.
A series of TiO2‐TUD‐1 samples was synthesized with a variable Ti loading in the range Si/Ti=100, 20, 2.5, and 1.6, by using a one‐pot surfactant‐free procedure. The materials obtained were characterized by elemental analysis; X‐ray diffraction (XRD); N2 sorption measurements; high‐resolution TEM (HR‐TEM); 29Si NMR, UV‐visible and Raman spectroscopy. As a function of increasing metal loading either isolated Ti atoms, or (above a Ti loading of ~2.5 wt‐ %) combinations of isolated Ti atoms and anatase (TiO2) nanoparticles were obtained; both were incorporated in the highly porous siliceous matrix. The photocatalytic performance of these materials was tested by studying the propane oxidation process following irradiation at λ=365 nm, selectively activating the anatase nanoparticles. In comparison to commercial anatase powder, TiO2 nanoparticles in TUD‐1 showed high photochemical selectivity towards acetone, the sample with a Si/Ti ratio of 1.6 being the most selective. Size and confinement effects are consistent with the difference in performance of the TUD‐1 materials and TiO2, limiting the number of electron transfers available for each propane molecule.  相似文献   

15.
The catalytic oxidation of methane has been examined over Pd supported on nanocrystalline (n-) and polycrystalline (p-) TiO2, Mn3O4, CeO2 and ZrO2. In all cases the Pd supported on the nanocrystalline oxides performs better on a mass basis than Pd supported on the polycrystalline oxides. Conversion vs temperature curves indicate that n-ZrO2 is more active than p-ZrO2 and that calcining both n-ZrO2 and p-ZrO2 at 500°C produces better catalysts than calcining at 280°C. n-CeO2 is a very good catalysts for methane oxidation, while p-CeO2 is not, and Pd supported on n-CeO2 performs much better than bare n-CeO2 and somewhat better than Pd supported on p-CeO2; Pd supported on n-Mn3O4 or p-Mn3O4 does not perform as well as CeO2-supported Pd catalysts. The 5 wt.% Pd/n-ZrO2 catalyst calcined at 500°C performs very well, achieving 100% conversion at 320°C for the reactor conditions used, while 5 wt.% Pd/n-CeO2 exhibits initial activity at the lowest temperature of about 100°C. The best catalyst tested in this study is 30 wt.% Pd/n-TiO2, which achieves 100% conversion at 300°C.  相似文献   

16.
Mesoporous (MSU) Ce0.5Zr0.5O2 mixed oxide with a high specific surface area has been synthesized under weak acidic condition in the presence of an anionic surfactant, sodium dodecylbenzenesulfonate. The effect of the pH value on the formation of mesostructure and the thermal stability of the material has been evaluated. The products were characterized by transmission electron microscopy, powder X-ray diffraction and nitrogen adsorption-desorption measurements. The results showed that the as-prepared Ce0.5Zr0.5O2 mixed oxide possessed a specific surface area of 163.3 m^2·g^-1, which had a cubic fluorite-type structure and possessed specific surface areas of 148.4 and 62.4 m^2·g^-1 after calcination at 500 and 800 ℃ for 2 h, respectively. The material showed excellent thermal stability.  相似文献   

17.
采用多元醇为模板剂合成了介孔Ce1-xZrxO2(x=0.2,0.35,0.5)固溶体材料,并以其为载体负载CuO制备了Cu基催化剂.应用透射电子显微镜、X射线衍射、程序升温还原、程序升温脱附和N2吸附-脱附等技术对载体及催化剂进行了表征,并研究了Zr的取代比例x值对载体和Cu基催化剂性能的影响.结果表明,所有Ce1-xZrxO2样品均为介孔材料,其中Ce0.5-Zr0.5O2载体样品有较大的比表面积(181m2/g),CuO/Ce0.5Zr0.5O2催化剂样品在富氢条件下有较高的催化CO选择性氧化反应的活性和选择性.与其他催化剂样品相比,CuO/Ce0.5Zr0.5O2催化剂样品中形成的活性中心更多,分散性更好,对CO的吸附量更大,CO脱附温度更低,活性组分与载体的相互作用更强。  相似文献   

18.
采用浸渍法制备了一系列CuO/Ce_(0.9)Zr_(0.1)O_2催化剂,并利用XRD,XPS对催化剂结构进行了表征,考察了铜担载量,焙烧温度,空速以及CO_2和H_2O的存在对选择氧化消除CO反应的影响.结果表明,在600℃焙烧后的催化剂具有最佳的催化活性和选择性,而且在CO_2和H_2O的存在下140℃也能达到有效消除CO(100ppm以下)的目的,同时选择性达到了70%.100h的连续测试显示催化剂具有良好的稳定性.  相似文献   

19.
High-surface area mesoporous 20 mol% CuO/ZrO2 catalyst was prepared by a surfactant-assisted method of nanocrystalline particle assembly, and characterized by x-ray powder diffraction (XRD), N2 adsorption, transmission electron microscopy (TEM), H2-TPR, TG-DTA, and x-ray photoelectron spectra (XPS) techniques. The catalytic properties of the CuO/ZrO2 nanocatalysts calcined at different temperature were evaluated by low-temperature carbon monoxide oxidation using a CATLAB system. The results showed that these mesoporous nanostructured CuO/ZrO2 catalysts were very active for low-temperature CO oxidation and the CuO/ZrO2 catalyst calcined at 400°C exhibited the highest catalytic activity.  相似文献   

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