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1.
The catalytic hydrogenation ofp-nitrophenol to p-aminophenol was investigated over Ni/TiO2 catalysts prepared by a liquid-phase chemical reduction method. The catalysts were characterized by inductively coupled plasma (ICP), X-ray powder diffraction (XRD), transmission electron microscopy (TEM), X-ray photoelectron spectra (XPS) and temperature-programmed reduction (TPR). Results show that the titania structure has favorable influence on physio-chemical and catalytic properties of Ni/TiO2 catalysts. Compared to commercial Raney nickel, the catalytic activity of Ni/TiO2 catalyst is much superior, irrespective of the titania structure. The catalytic activity of anatase titania supported nickel catalyst Ni/TiO2(A) is higher than that of rutile titania supported nickel catalyst Ni/TiO2(R), possibly because the reduction of nickel oxide to metallic nickel for Ni/TiO2(A) is easier than that for Ni/TiO2(R) at similar reaction conditions.  相似文献   

2.
Co and Mo bimetallic nitrides supported on Mg(Al)O, MgO and γ-Al2O3 were prepared in temperatureprogrammed reactions with NH3. The surface morphology, chemical composition and catalytic activity for NH3 decomposition on the supported Co and Mo bimetallic nitrides were studied by X-ray diffractometer (XRD), NH3 temperature-programmed desorption and mass spectrometer (NH3-TPD-MS), temperature-programmed desorption and mass spectrometer (TPD-MS), H2 temperature-programmed surface reaction (H2-TPSR) and activity test. The phases of Co3Mo3N and MoN could be formed on Mg(Al)O, MgO and Al2O3 during the nitridation, and they might be more uniformly dispersed on Mg(Al)O and MgO than on γ-Al2O3. Transition metallic nitrides are generally considered as potential catalysts for hydrogen-involving reactions due to the entrance of hydrogen atoms into subsurface and the lattice of metallic nitrides. The diffusion of nitrogen in the bulk and the structure transformation of Co and Mo nitride compounds occur during NH3-TPD, but the supported Co and Mo bimetallic nitrides are not easily reduced at H2 atmosphere. Co3Mo3N/Mg(Al)O catalyst exhibits the highest activity, while Co3Mo3N/Al2O3 exhibits the lowest activity for NH3 decomposition. Furthermore, the catalytic activity of Co and Mo bimetallic nitrides is not only much higher than that of supported single metallic nitride, but also highly dependent upon the surface acidity and BET surface area of support.  相似文献   

3.
Large surface areas nano-scale zirconia was prepared by the self-assembly route and was employed as support in nickel catalysts for the CO selective methanation. The effects of Ni loading and the catalyst calcination temperature on the performance of the catalyst for CO selective methanation reaction were investigated. The cata- lysts were characterized by Brunauer-Emmett-Teller (BET), transmission electron microscope (TEM), X-ray dif- fraction (XRD) and temperature-programmed reduction (TPR). The results showed that the as-synthesized Ni/nano-ZrO2 catalysts presented high activity for CO methanation due to the interaction between Ni active particle and nano zir- conia support. The selectivity for the CO methanation influenced significantly by the particle size of the active Ni species. The exorbitant calcination resulted in the conglomeration of dispersive Ni particles and led to the decrease of CO methanation selectivity. Among the catalysts studied, the 7.5% (by mass) Ni/ZrO2 catalyst calcinated at 500℃ was the most effective for the CO selective methanation. It can preferentially catalyze the CO methanation with a higher 99% conversion in the CO/CO2 competitive methanation system over the temperature range of 260-280℃, while keeping the CO2 conversion relatively low.  相似文献   

4.
Oxide supports modify electronic structures of supported metal nanoparticles,and then affect the catalytic activity associated with the so-called strong metal-support interaction(SMSI).We herein report the strong influence of SMSI employing Ni_4/α-MoC(111) and defective Ni_4/MgO(100) catalysts used for dry reforming of methane(DRM,CO_2+CH_4→2 CO+2 H_2) by using density functional theory(DFT) and kinetic Monte Carlo simulation(KMC).The results show that α-MoC(111) and MgO(100) surface have converse electron and structural effect for Ni_4 cluster.The electrons transfer from a-MoC(111) surface to Ni atoms,but electrons transfer from Ni atoms to MgO(100) surface;an extensive tensile strain is greatly released in the Ni lattice by MgO,but the extensive tensile strain is introduced in the Ni lattice by α-MoC.As a result,although both catalysts show good stability,H_2/CO ratio on Ni_4/α-MoC(111) is obviously larger than that on Ni_4/MgO(100).The result shows that Ni/α-MoC is a good catalyst for DRM reaction comparing with Ni/MgO catalyst.  相似文献   

5.
The copper based catalysts, CuO/γ-Al2O3, CuO/γ-Al2O3-cordierite (Cord) and CuO/Cord, were prepared by impregnation method. The catalytic activity of the catalysts was tested in absence and presence of water vapor, and the catalysts were characterized. Temperature program desorption (TPD) experiments of toluene and water on the catalysts were carried out. The influence of water vapor on the activity of the catalysts was discussed. Results showed that addition of the water vapor has a significant negative effect on the catalytic activity of the catalysts. The higher the concentration of the water vapor in feed steam was, the lower the catalytic activity of the copper based catalysts became, which could be mainly ascribed to the competition of water molecules with toluene molecules for adsorption on the catalyst surfaces. TPD experiments showed that the strength of the interaction between water mole-cules and three catalysts followed the order: CuO/γ-Al2O3>CuO/γ-Al2O3-Cord>CuO/Cord. As a consequence of that, the degree of degradation in the catalytic activity of these three catalysts by the water vapor followed the order: CuO/γ-Al2O3>CuO/γ-Al2O3-Cord>CuO/Cord. However, the negative effect of the water vapor was reversible.  相似文献   

6.
WP/γ-Al2O3催化剂的制备、表征及加氢脱硫和加氢脱氮活性   总被引:1,自引:0,他引:1  
Two series of WP/Al2O3 catalyst precursors with WP mass loading in the range 18.5%-37.1% were prepared using the impregnation method and mixing method, respectively, and the catalysts were then obtained by temperature-programmed reduction of supported tungsten phosphate (precursor of WP/Al2O3 catatlysts) in H2 at 650℃ for 4h. The catalysts were characterized by XRD, BET, TG/DTA, XPS and 31p MAS-NMR. The activities of these catalysts were tested in the hydrodenitrogenation (HDN) of pyridine and hydrodesulfurization (HDS) of thiophene at 340℃ and 3.0MPa. The results showed that owing to the stronger interaction of the support with the active species, the precursor of WP/Al2O3 catalyst was more difficultly phosphided and a greater amount of W species was in a high valence state W6 on the surface of the catalyst prepared by the impregnation method than that by the mixing method. 31p MAS-NMR results indicated that 31p shift from 85% H3PO4 of 2.55 × 10-4 for WP and 2.57 × 10-4 for WP/γ-Al2O3 catalysts prepared by mixing method. Such WP/Al2O3 catalysts showed higher HDN activities and lower HDS activities than those prepared by the impregnation method under the same loading of WP.WP/γ-Al2O3 catalysts with weak interaction between support and active species were favorable for HDN reaction while the WP/γ-Al2O3 catalysts with strong interaction were favorable for HDS reaction.  相似文献   

7.
Carbon deposition is sensitive to the metal particle sizes of supported Ni catalysts in CH4/CO2 reforming.To explore the reason of this phenomenon,Ni4,Ni8,and Ni12 which reflect the different cluster thicknesses supported on the MgO(100) slabs,have been employed to simulate Ni/MgO catalysts,and the reaction pathways of CH4/CO2 reforming on Nix/MgO(100) models are investigated by density functional theory.The reforming mechanisms of CH4/CO2 on different Nix/MgO(100) indicate the energy barriers of CH4 dissociated adsorption,CH dissociation,and C oxidation three factors are all declining with the decrease of the Ni cluster sizes.The Hirshfeld charges analyses of three steps as described above show only Ni atoms in bottom two layers can obtain electrons from the MgO supporters,and the main electron transfer occurs between adsorbed species and their directly contacted Ni atoms.Due to more electron-rich Ni atoms in contact with the MgO supporters,the Ni/MgO catalysts with small Ni particles have a strong metal particle size effect and lead to its better catalytic activity.  相似文献   

8.
Gas-phase dehydration of glycerol to produce acrolein was investigated over commercial catalysts based onγ-Al2O3, viz. A-64, A-56, I-62, AP-10, AP-56, AP-64 and KR-104. To understand the effect of Cl?anions, HCl-impregnated sup-ports have been investigated in the dehydration reaction of glycerol at 375 °C. For comparison, various H-zeolites were also examined. It was found that the glycerol conversion over the solid acid catalysts was strongly dependent on their acidity and surface area. And the relationship between the catalytic activity and the acidity of the catalysts was discussed. The outstanding properties of Pt/γ-Al2O3 catalyst systems for the dehydration of glycerol were revealed. Pt/γ-Al2O3 catalyst (AP-64) showed the highest catalytic activity after 50 h of reaction with an acrolein selectivity of 65%at a conversion of glycerol of 90%. Based on these results, catalysts based onγ-Al2O3 appear to be most promising for gas phase dehydration of glycerol.  相似文献   

9.
Highly active MCM-41 supported nickel phosphide catalysts for hydrodesulfurization(HDS) were synthesized by two different phosphorus sources, in which the surface of Ni_2P catalysts were modified by air instead of being passivated by O_2/N_2 mixture. In addition, the catalysts need not be activated with flowing H_2(30 ml·min~(-1))at 500 °C for 2 h prior to reaction as traditional method. X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS), N_2-adsorption specific surface area measurements and CO chemisorption were used to characterize the resulting catalysts. The effect of modification with air on the surface of the catalysts for HDS performance was investigated. Results showed that the surface modification with air can promote the formation of smaller Ni_2P particles and more active Ni sites on surface of catalysts. At 3.0 MPa and 613 K, the dibenzothiophene(DBT)conversion of the catalysts modified with air was 98.7%, which was 7.1% higher than that of catalyst passivated by O_2/N_2 mixture. The higher activities of Ni_2P(x)/M41-O catalysts can be attributed to the smaller Ni_2P particles sizes and the increased hydrogen dissociation activity due to the surface modification.  相似文献   

10.
Amorphous Ni-B/ZrO2 catalysts were prepared by coprecipitation-chemical reduction with KBH4 aqueous solution,and various crystalline phase ZrO2(amorphous-ZrO2,tetragonal-ZrO2 and monoclinic-ZrO2) supported Ni-B catalysts were obtained by thermal treatment in 5%H2-N2 stream at different temperature.The effect of ZrO2 polymorphs and the treatment temperature on the catalytic performance for the CO selective methanation were investigated,and the catalysts were characterized by N2 physisorption,Powder X-ray diffraction(XRD), Temperature-Programmed Desorption(CO-TPD and H2-TPD),and Differential Scanning Calorimeter(DSC).The treatment temperature affected strongly the crystalline structure of ZrO2,and the CO methanation activity and selectivity of the Ni-B/ZrO2 catalysts were significantly influenced by the crystalline phase of ZrO2.Of the three forms of ZrO2 polymorphs(amorphou-ZrO2,tetragonal-ZrO2 and monoclinic-ZrO2),the amorphous-ZrO2 supported nickle catalyst showed highest CO methanation activity,attributing in large part to the largest specific surface area and the optimum CO/H2 absorption intensity of the Ni-B/amorphous-ZrO2 catalyst.  相似文献   

11.
采用等体积浸渍法制备了K_2O和La_2O_3改性的Ni/SiO_2催化剂.考察了K_2O和La_2O_3助刑引入方式对Ni/SiO_2催化剂催化间二硝基苯加氢制间苯二胺的影响.并用比表面积法(BET)、程序升温还原实验(TPR)和X射线衍射法(XRD)等对催化剂的结构进行了表征.结果表明,K_2O和La_2O_3的引入方式对Ni/SiO_2催化剂的物化性质和加氢性能影响明显.当K_2O、La_2O_3和Ni以共浸渍方式引入时,大大削弱载体与镍物种之间的相互作用,镍晶粒度变小,分散度增加,催化剂活性显著提高.加入催化剂1.2g、间二硝基苯40g和溶剂乙醇100mL,在3.0MPa、373K条件下反应4.5h后,间二硝基苯的转化率和间苯二胺的选择性分别达到99.8%和99.5%.  相似文献   

12.
以正硅酸乙酯为原料,采用溶胶-凝胶法,分别经乙醇超临界干燥和常规干燥制得SiO2气凝胶和干凝胶载体,并以La2O3为助剂,通过浸渍法制备了用于间二硝基苯液相加氢制间苯二胺反应的镍基催化剂,通过BET、XRD、TPR、H2-TPD和活性评价等方法对催化剂的物化性质和催化性能进行了研究.结果表明,虽然以SiO2气凝胶为载体制备的二元镍基催化剂的镍晶粒的粒度较小,但由于金属镍烧结导致它表面存在的活性位相对较少,对反应组分的吸附强度较弱,致使其活性低于SiO2干凝胶负载的二元镍基催化剂.添加La2O3助剂的三元镍基催化剂的活性总体上比二元催化剂要高,其中以SiO2干凝胶为载体制备的三元催化剂具有较高的活性比表面积和适宜的吸附强度,对间二硝基苯加氢反应表现出很高的催化活性,在2.6 MPa、373 K下反应1 h后,间二硝基苯转化率可达97.0%、间苯二胺产率达93.1%.  相似文献   

13.
刘迎新  陈吉祥  张继炎  何菲 《化工学报》2005,56(11):2114-2118
采用等体积浸渍法制备了La2O3改性的Ni/SiO2催化剂,考察了La2O3的引入方法对Ni/SiO2催化剂催化间二硝基苯加氢制间苯二胺反应性能的影响,并采用XRD、TPR和XPS等表征技术对催化剂的物化性质进行了研究.结果表明,La2O3的添加顺序对Ni/SiO2催化剂的物化性质和加氢性能影响非常明显.当镧以先于镍浸渍方式引入时,将大大削弱载体与镍物种之间的相互作用,镍晶粒度变小,分散度增加,催化剂的活性显著提高,间二硝基苯转化率和间苯二胺收率分别达到97.1%和93.5%.在以镍和镧共浸方式制备的催化剂中,La2O3的存在也使Ni/SiO2催化剂的反应性能有所改善,但效果没有镧先于镍浸渍方式突出.当以先浸镍后浸镧的方式加入助剂时,催化剂中的镍晶粒增大,分散性变差,催化剂的活性大幅度下降.  相似文献   

14.
助剂对加氢催化剂Ni/SiO_2结构和反应性能的影响   总被引:3,自引:0,他引:3  
采用等体积浸渍法制备了含不同助剂的m 二硝基苯液相催化加氢催化剂Ni/SiO2,利用BET、XRD、TPR和活性评价等方法对催化剂的物化性质和催化性能进行了研究,考察了不同助剂对催化剂结构和反应性能的影响。试验结果表明,向NiO/SiO2催化剂中引入La2O3、K2O及Li2O助剂后提高了催化剂中镍物种的分散度及还原能力,改善了催化剂的反应性能,其中以La2O3和K2O双助剂的作用最为明显。  相似文献   

15.
采用等体积浸渍法制备了MgO、HZSM-5、y-Al2O3、TiO2和SiO2负载的镍催化剂,考察了不同载体负载的镍基催化剂在甲苯水蒸汽重整反应中的活性和稳定性,并通过X射线衍射(XRD),程序升温还原(H2-TPR)以及程序升温脱附(NH3-TPD)等方法对催化剂的性质进行表征.结果表明,Ni/MgO催化剂中的镍镁固溶体和Ni/y-Al2O3催化剂中的镍铝尖晶石的形成有利于提高催化剂的活性,而载体的酸性容易导致催化剂积碳而不利于催化剂的稳定性.  相似文献   

16.
刘少文  涂文艳  包传平 《化工进展》2012,31(1):122-125,162
研究助剂La2O3对Ni/γ-Al2O3/堇青石结构化催化剂结构与性能的影响。采用悬浮液涂层法、活性组分浸渍法制备不同La2O3助剂含量的Ni/γ-Al2O3/堇青石结构化催化剂。通过BET、XRD、TPR、XPS对催化剂进行表征,发现不添加La2O3助剂时活性组分以NiAl2O4形式存在,添加La2O3助剂后则以NiAl2O4和NiO两种形式存在,易还原NiO的生成提高了催化剂的活性。添加La2O3助剂还能使催化剂的比表面积降低和孔尺寸增大,活性评价表明助剂La2O3存在适宜添加量,即La含量为3%。同时发现助剂La2O3对选择性的影响大于活性,La2O3具有结构助剂的特点。  相似文献   

17.
将Ni/SiO2催化剂应用于间二硝基苯加氢反应中,考察了该催化剂制备过程中焙烧温度和还原温度对其催化性能的影响,并通过BET、XRD、TEM、TPR等方法对催化剂进行了表征.结果表明,在实验研究范围内,随着焙烧温度的提高,Ni/SiO2催化剂比表面积降低,NiO与载体SiO2之间的相互作用逐渐增强,催化剂的还原温度明显提高,活性组分Ni的晶粒度增大,焙烧温度为773 K时催化剂具有最佳的催化反应性能,此时活性组分Ni以高分散状态存在.催化剂的还原温度对Ni/SiO2催化剂的结构和催化性能影响显著,当还原温度较低时,活性组分还原不完全,催化剂活性较低;而还原温度太高会使活性组分烧结,导致催化剂活性明显降低;还原温度为723 K时催化剂表现出最佳的活性和选择性.  相似文献   

18.
采用共沉淀法制备了不同载体负载的超细镍催化剂,考察了载体对催化剂催化苯完全加氢反应性能的影响。结果表明,在140~190℃和4MPa氢压下,不同载体负载的催化剂上苯完全加氢活性相差很大,活性大小顺序为:SiO2〉硅藻土〉ZrO2〉TiO2〉γ—A1203。激光粒度分析、BET、XRD和TPR结果表明,催化剂具有大的比表面积,活性组分在载体表面分散均匀,载体与Ni相互作用较强的SiO2作载体苯完全加氢活性最好。  相似文献   

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