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1.
采用溶胶凝胶法和浸渍法制备10%Mn/Al_2O_3-TiO_2催化剂,借助TPO、XRD、O_2-TPD、Raman、XPS等手段,考察焙烧温度(450~650℃)对催化剂结构以及氧化NO性能的影响。TPO结果表明催化剂活性随焙烧温度的升高先增后减,其中焙烧温度为550℃时催化剂活性最好。XPS结果显示随着焙烧温度的升高(450~550℃),催化剂表面Mn~(3+)的含量逐渐升高,与催化剂活性的强弱成对应关系,并且催化剂晶格氧含量下降,而表面化学吸附氧从40.9%增加到64.8%。Raman分析显示550℃焙烧时,催化剂表面存在丰富的Mn_2O_3活性物种,并且O_2-TPD分析也表明随着焙烧温度的升高,晶格氧向表面化学吸附氧流动,提高了化学吸附态氧物种的含量。这些结果表明Mn_2O_3可能是NO氧化起主要作用的活性Mn物种,释放更多的表面化学吸附氧物种,将有助于促进NO的催化氧化。  相似文献   

2.
采用溶胶-凝胶法和浸渍法制备Cr/Al_2O_3-TiO_2催化剂,在考察不同Cr负载量的基础上,研究不同金属负载与焙烧温度对Cr/Al_2O_3-TiO_2催化剂结构与性能影响。程序升温氧化(TPO)结果表明,当Cr负载量为10%(w/w)时具有较好的催化活性;不同金属负载Cr/Al_2O_3-TiO_2时,负载Co及在焙烧温度为550℃时催化剂具有较好的活性。通过程序升温还原(H_2-TPR)表征发现,Co的负载使催化剂的低温氧化还原能力逐渐提高,表明Co-Cr具有较好的协同催化作用。X射线光电子能谱(XPS)表征表明,Co增加了Cr~(6+)和表面吸附氧(O_β)含量,随着焙烧温度的升高(450~550℃),晶格氧不断向催化剂表面流动,表面化学吸附氧O_β比例逐渐增加,导致催化活性不断升高,说明Cr~(6+)和O_β是催化氧化NO的重要活性物种。  相似文献   

3.
Mn / Ce / La / Al2O3催化剂中锰物种的精细结构研究   总被引:3,自引:0,他引:3  
采用浸渍法制备了La、Ce助剂改性的γ-Al2O3负载锰氧化物催化剂,运用XANES、EXAFS、XRD、XPS和H2-TPR等方法对催化剂的结构进行了表征,探讨了助剂对于催化剂中高分散Mn物种的精细结构、分散状态和存在形式的影响,并与样品的CO氧化活性相关联。XANES和EXAFS结果表明,500 ℃焙烧的样品中Mn物种主要以超细Mn2O3微晶形式存在,该物种由于高度分散使其配位对称性显著降低,无长程有序结构。TPR结果表明,样品中存在3种不同分散状态的表面Mn物种,即较难还原的Mn3+-O-Al3+相互作用物种,尺寸相对较大的三维分散的Mn2O3微晶,以及二维高度分散的Mn物种,后者是CO氧化反应的主要活性相。虽然Ce的加入使Mn物种的分散度有所降低,但Ce与Mn物种间的相互作用弱化了Mn-O键,加速了反应过程中活性氧物种的传递,提高了氧化还原循环的效率。同时,La的加入进一步促进了Ce物种在载体表面的分散,加强了Ce物种与Mn物种间的相互作用及催化协同性。  相似文献   

4.
高琳心  蒋新  郭森 《物理化学学报》2001,30(7):1303-1308
采用吸附相反应技术制备得到了MnOx/CeO2/SiO2催化剂,通过X 射线衍射(XRD)、透射电子显微镜(TEM)、高分辨透射电子显微镜(HRTEM)、紫外激光拉曼(Raman)等手段对催化剂进行了表征. HRTEM分析表明活性组分MnOx与CeO2都均匀分布在载体SiO2表面;XRD分析表明Mn3O4特征峰随着CeO2含量的增加逐渐减小至完全消失,CeO2的加入降低了MnOx的结晶程度,增加了MnOx的分散性;Raman光谱表明催化剂表面的Mn离子能够进入CeO2晶格,激发出空穴氧,随着CeO2负载量的增加,催化剂氧空穴浓度先升高后降低.以NH3为还原剂,考评催化剂的NOx低温选择性催化还原(SCR)性能,催化剂催化活性随CeO2负载量增加先升高后降低,与催化剂氧空穴浓度变化规律一致,说明催化剂活性受氧空穴浓度影响,氧空穴浓度升高,催化剂催化活性升高.  相似文献   

5.
采用化学吸附-水解法制备了系列CuO/CeO2-Al2O3催化剂,运用XANES、EXAFS、XRD和H2-TPR等方法对催化剂的结构进行了表征,探讨了不同焙烧温度对催化剂中高分散Cu物种的微观局域结构、分散状态和存在形式的影响,并与样品的CO氧化性能关联。结果表明,500 ℃焙烧样品中Cu物种主要以高分散的CuO微晶形式存在,与载体及CeO2的作用相对较弱;当焙烧温度提高至650 ℃,存在3种铜物种,即与Al相似文献   

6.
对环己酮肟气相Beckmann重排反应制己内酰胺B2O3/TiO2-ZrO2催化剂的失活原因和再生方法进行了研究。通过对失活催化剂进行N2吸附、XRD、NH3-TPD等表征后发现,引起催化剂失活的主要原因是催化剂表面因积炭所引起的酸性改变。失活催化剂在600℃于空气气氛中焙烧8h可完全恢复到新鲜催化剂的水平。  相似文献   

7.
采用溶胶-凝胶法制备了一系列不同Al2O3含量的SiO2-Al2O3复合氧化物,以该系列复合氧化物为载体,采用等体积浸渍法制备了Ni负载量15%(重量百分比)的催化剂,用于催化乙酰丙酸加氢制γ-戊内酯.采用N2物理吸附、X射线衍射(XRD)、H2程序升温还原(H2-TPR)、H2程序升温脱附(H2-TPD)、NH3程序升温脱附(NH3-TPD)和吡啶吸附红外(Py-IR)等手段对催化剂进行了表征.结果表明,不同载体催化剂的活性组分分散度及表面酸性质存在明显差异,显著影响了催化剂吸附、活化H2与C=O键的能力,进而影响了催化剂的乙酰丙酸加氢活性.其中,Ni/SiO2-Al2O3催化剂上的L酸中心能够促进C=O键的吸附、活化,与金属Ni上的H2吸附活性位协同作用,大大提高了乙酰丙酸加氢活性.因此,具有最多L酸中心和丰富H2吸附活性位的Ni/SiO2-8Al2O3催化剂表现出最高的乙酰丙酸加氢活性,在180℃、4 MPa氢气压力下,乙酰丙酸转化率达到90.5%,目标产物γ-戊内酯选择性为100%.  相似文献   

8.
黄利华  陈耀强 《无机化学学报》2020,36(11):2145-2156
采用"软-硬"模板法制备了具有高热稳定性的Ce0.65Zr0.35O2(CeZr)。考察了制备过程中焙烧温度对Ce0.65Zr0.35O2及其负载的单Pd三效催化剂(TWC)性能的影响。对样品进行了X射线衍射、比表面、拉曼光谱、X射线光电子能谱、储氧性能和H2程序升温还原性能测试。结果表明:焙烧温度显著影响催化剂的结构和性能。随着焙烧温度的增加,Ce0.65Zr0.35O2的比表面下降,但在1 000℃焙烧的样品比表面为61 m2·g-1,显著高于同温度下直接在空气中焙烧的样品。由于高温导致了物相重组,Ce0.65Zr0.35O2的储氧量和还原性能随着焙烧温度的增加而提升。由于高温烧结导致Pd分散性的下降,其负载的催化剂的还原性能随着焙烧温度的增加而下降,从而最终导致催化剂活性的降低。但在"软-硬"模板法中1 000℃焙烧的样品负载的催化剂依然显示出很好的三效催化性能,该催化剂上C3H8、CO和NO的起燃温度分别为274、175和133℃,显著低于同温度下空气中直接焙烧的样品负载的催化剂。催化剂的氧化还原性能和Pd的分散性是影响催化活性的主要因素。  相似文献   

9.
采用XRD,TPR,CO吸附in-situ IR,CO氧化反应等对CuO/γ-Al2O3催化剂经CO处理前后的结构、组成和催化性能进行了研究。结果表明,经CO在250 ℃下处理1 h后CuO/γ-Al2O3催化剂中出现了分散态Cu+物种,该物种的产生使催化剂的活性明显提高。  相似文献   

10.
采用色谱-微反流动法反应装置考察了w%CuO/15%TiO2/γ-Al2O3催化剂对NO+CO的反应活性;催化剂经空气氛或氢气氛预处理后,NO转化率达100%的反应温度分别是325和275 ℃;XRD仅能检测到γ-Al2O3晶相,负载15%CuO后可以检测到微弱的CuO晶相;H2-TPR能检测到2个CuO的还原峰(α和β峰),将其归属于高度分散的CuO分别在裸露的γ-Al2O3和TiO2/γ-Al2O3载体上的还原;原位红外分析结果表明催化剂经空气氛或氢气氛预处理后,吸附NO+CO反应气后,反应的中间产物N2O出现的温度分别为200和150 ℃。  相似文献   

11.
一些具有NASICON型网格结构的固体电解质具有高的电导率和好的稳定性,NASICON的意思是Na Super Ionic Conductor[1]。当NaZr2(PO4)3中P5 被Si4 部分取代时便可以得到具有NASICON结构的Na1 xZr2SixP3-xO12体系,其具有高的钠离子电导率。然而有相同结构的Li1 xZr2SixP3-xO12体系的离子电导率却很低,这是因为Li 半径太小,而NASICON三维网格结构的离子通道太大,两者不匹配而使电导率下降[2]。但当LiZr2(PO4)3中Zr4 被离子半径小些的Ti4 取代,所得LiTi2(PO4)3的通道就与Li 半径相匹配,适合于锂离子的迁移,从而使其电导率…  相似文献   

12.
Thin crystals of La2O3, LaAlO3, La2/3TiO3, La2TiO5, and La2Ti2O7 have been irradiated in situ using 1 MeV Kr2+ ions at the Intermediate Voltage Electron Microscope-Tandem User Facility (IVEM-Tandem), Argonne National Laboratory (ANL). We observed that La2O3 remained crystalline to a fluence greater than 3.1×1016 ions cm−2 at a temperature of 50 K. The four binary oxide compounds in the two systems were observed through the crystalline-amorphous transition as a function of ion fluence and temperature. Results from the ion irradiations give critical temperatures for amorphisation (Tc) of 647 K for LaAlO3, 840 K for La2Ti2O7, 865 K for La2/3TiO3, and 1027 K for La2TiO5. The Tc values observed in this study, together with previous data for Al2O3 and TiO2, are discussed with reference to the melting points for the La2O3-Al2O3 and La2O3-TiO2 systems and the different local environments within the four crystal structures. Results suggest that there is an observable inverse correlation between Tc and melting temperature (Tm) in the two systems. More complex relationships exist between Tc and crystal structure, with the stoichiometric perovskite LaAlO3 being the most resistant to amorphisation.  相似文献   

13.
Tao Lin  Wei Li  Maochu Gong  Yao Yu  Bo Du  Yaoqiang Chen   《Acta Physico》2007,23(12):1851-1856
TiO2,ZrO2-TiO2,andZrO2-TiO2-CeO2 were prepared by co-precipitation method and characterized by X-ray diffraction (XRD), specific surface area measurements (BET), temperature programmed desorption (NH3-TPD), oxygen storage capacity (OSC), and temperature programmed reduction (H2-TPR). The results showed that ZrO2-TiO2-CeO2 exhibited large number of surface strong acid, possessed some oxygen storage capacity, and strong redox property. The three materials were used as supports and the monolith catalysts were prepared with 1% (w) V2O5 and 9% (w)WO3 for selective catalytic reduction (SCR) of NO with ammonia in the presence of excessive O2, and the results of catalytic activity showed that the catalyst used ZrO2-TiO2-CeO2 as support yielded nearly 100% NO conversion at 275 °C at a gas hourly space velocity (GHSV) of 10000 h−1, and it had the best catalytic activity and showed great potential for practical application.  相似文献   

14.
以锐钛矿TiO_2为载体,考察了CeO_2改性对Ag-CeO_2-V_2O_5/TiO_2催化3-甲基吡啶氧化脱甲基性能的影响,并优化了催化剂组成与制备条件.结果表明:Ce掺杂改性不仅能够与V物种作用形成Ce VO_4,而且促进V_2O_5分散,改善活性组分的氧化还原性能,从而提高3-甲基吡啶脱甲基转化率与选择性,改善Ag-V_2O_5/TiO_2催化性能.适宜的催化剂组成为V_2O_5负载量15%,Ce/V的摩尔比0.33,Ag质量分数1.0%.过高的焙烧温度将导致TiO_2载体向金红石型转变,Ag-CeO_2-V_2O_5/TiO_2适宜制备条件为450℃焙烧4 h.  相似文献   

15.
Samples in the system Lu2−xYxSi2O7 (0?x?2) have been synthesized following the sol-gel method and calcined to 1300 °C, a temperature at which the β-polymorph is known to be the stable phase for the end-members Lu2Si2O7 and Y2Si2O7. The XRD patterns of all the compositions studied are compatible with the structure of the β-polymorph. Unit cell parameters are calculated as a function of composition from XRD patterns. They show a linear change with increasing Y content, which indicates a solid solubility of β-Y2Si2O7 in β-Lu2Si2O7 at 1300 °C. 29Si MAS NMR spectra of the different members of the system agree with the XRD results, showing a linear decrease of the 29Si chemical shift with increasing Y content. Finally, a correlation reported in the literature to predict 29Si chemical shifts in silicates is applied here to obtain the theoretical variation in 29Si chemical shift values in the system Lu2Si2O7-Y2Si2O7 and the results compare favorably with the values obtained experimentally.  相似文献   

16.
A new reaction of MgCl2·4H2O with CCl2F2 is investigated by DTA and TG from room temperature to 350 °C. It is observed that MgF2 was obtained between 252 and 350 °C, Below the temperature, MgCl2·4H2O dehydrates and hydrolyzes to MgCl2 and Mg(OH)Cl, which are the real reactants of the reaction with CCl2F2. The formation of MgF2 is ascribed to the reaction of MgCl2 and Mg(OH)Cl with HF, which forms by decomposition of CCl2F2 with the taking part in of H2O released from dehydration of hydrated magnesium chloride on the surface of MgCl2 and Mg(OH)Cl, which catalyzes the decomposition of CCl2F2 in this case. Consequently, the reactions are tested in the fluid-bed condition. It is found that MgF2 formed at temperatures down to 200 °C in a fluid-bed reactor. This reaction may be used as a method of disposing of the environmentally sensitive CCl2F2 (rather than release into the atmosphere). It is also a method for the preparation of MgF2.  相似文献   

17.
Li2ZrO3材料吸收CO2性能的进一步研究   总被引:8,自引:0,他引:8  
用不同结构的ZrO2合成了一系列在高温下吸收CO2的Li2ZrO3材料,并详细的研究了反应物质的物理和化学性质对生成物吸收CO2性能的影响。采用SEM、XRD以及TG分析法分别进行了材料结构及其吸收CO2性能的表征,并使用XPS法测定了材料表面的元素组成。实验结果表明,使用不同结构的ZrO2合成的Li2ZrO3,其吸收CO2的性能明显的不同。用ZrO2(t)(四方)合成的Li2ZrO3吸收CO2的速度快,在500 ℃下,20% CO2(80%空气)的气氛中保持3h,其吸收量可达25(±0.6)%(wt),而以ZrO2(m)(单斜)为原料制备的Li2ZrO3在上述吸收条件下重量仅增加9(±0.6)%(wt)。此外,实验结果还表明化学元素的掺杂对用ZrO2(m)合成的Li2ZrO3的CO2吸收速度及吸收容量影响较大。  相似文献   

18.
用HF自洽场理论和密度泛函理论(DFT)的B3LYP方法,在6 31G水平上研究了低聚物(Cl2AlNH2)n和(H2AlNH2)n(n=1~5)簇的几何构型、电子结构和聚合反应热力学性质,比较了两个系列化合物中化学键的强度.结果表明,Cl2AlNH2和H2AlNH2分子为C2 (EC)平面型结构,其中Al-N为由一个σ键和一个键组成的双键.(Cl2AlNH2)n和(H2AlNH2)n(n=1~5)分子为Dnh对称,Al-N是典型的σ单键 .低聚物(Cl2AlNH2)n和(H2AlNH2)n的稳定性顺序分别为: 3 > 2 > 4> 5 > 1和8 > 7 > 9 > 11 > 6.  相似文献   

19.
Mn-Na2WO4/SiO2催化剂表面活性中心结构的DFT研究   总被引:1,自引:0,他引:1  
Mn Na2WO4/SiO2 is one of the best catalysts for oxidative coupling of methane.To investigate the nature of active centers and the reaction mechanism,the structure of possible metal sites formed by tungsten and manganese over the silica surface were studied using molecular simulation method and ab initio DFT calculations.Silica support exists in the catalyst as 岐瞔ristobalite and its (111) face exposes preferentially to the surface.The calculated results show that tungsten interacts with the silica surface by three or one bridge oxygen atoms to form tetrahedral [WO4],and manganese interacts with single bridge oxygen to form dispersed [MnO4] or exists as oxide clusters.The nature of the molecular orbitals and the electronic structure suggest that the tetrahedral [WO4] site with single bridge oxygen is the most probable active center responsible for methane activation.  相似文献   

20.
The crystal structures of K2S2O7, KNaS2O7 and Na2S2O7 have been solved and/or refined from X-ray synchrotron powder diffraction data and conventional single-crystal data. K2S2O7: From powder diffraction data, monoclinic C2/c, Z=4, a=12.3653(2), b=7.3122(1), , β=93.0792(7)°, RBragg=0.096. KNaS2O7: From powder diffraction data; triclinic , Z=2, a=5.90476(9), b=7.2008(1), , α=101.7074(9), β=90.6960(7), γ=94.2403(9)°, RBragg=0.075. Na2S2O7: From single-crystal data; triclinic , Z=2, a=6.7702(9), b=6.7975(10), , α=116.779(2), β=96.089(3), γ=84.000(3)°, RF=0.033. The disulphate anions are essentially eclipsed. All three structures can be described as dichromate-like, where the alkali cations coordinate oxygens of the isolated disulphate groups in three-dimensional networks. The K-O and Na-O coordinations were determined from electron density topology and coordination geometry. The three structures have a cation-disulphate chain in common. In K2S2O7 and Na2S2O7 the neighbouring chains are antiparallel, while in KNaS2O7 the chains are parallel. The differences between the K2S2O7 and Na2S2O7 structures, with double-, respectively single-sided chain connections and straight, respectively, corrugated structural layers can be understood in terms of the differences in size and coordinating ability of the cations.  相似文献   

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