首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 109 毫秒
1.
采用浸渍法制备了Ce0.8La0.2O1.9同溶体负载Pt催化剂,用于气相巴豆醛选择加氧反应中.采用X射线粉末衍射、程序升温还原、NH3程序升温脱附和拉曼光谱等技术对催化剂进行了表征.结果表明,随着Pt负载量增加,Pt/Ce0.8La0.2O1.9催化剂活性(TOF)和巴豆醇选择性均先增加后降低.当Pt负载量为3%时,...  相似文献   

2.
用溶胶凝胶-浸渍法在900℃煅烧3 h后制备了烧绿石逆负载型催化剂Ce O2/La2Sn1.7Co0.3O7-δ,并用于甲烷催化燃烧反应,显示出较好的催化燃烧活性.催化剂还具有良好的高温热稳定性和可重复利用性能,可使甲烷转化90%的温度(T90)降到564℃,与相同条件下制备的单一烧绿石型催化剂La2Sn1.7Co0.3O7-δ和La2Sn1.7Co0.3O7-δ与Ce O2机械混合的催化剂相比,T90分别降低78和135℃.X射线衍射结果表明,烧绿石型逆负载催化剂具有Ce O2和La2Sn1.7Co0.3O7-δ2种物相,在逆负载型催化剂中的Ce O2比机械混合催化剂中的Ce O2分散程度更好;H2程序升温还原实验也证实逆负载催化剂Ce O2/La2Sn1.7Co0.3O7-δ的相应3个还原峰温度均比单一烧绿石型催化剂La2Sn1.7Co0.3O7-δ相应3个还原峰温度明显降低;透射电子显微镜和原子力显微镜结果表明,逆负载催化剂Ce O2/La2Sn1.7Co0.3O7-δ抗烧结能力强,颗粒分散均匀,粒径尺寸相应较小;穆斯堡尔谱和X射线光电子能谱结果证明逆负载催化剂Ce O2/La2Sn1.7Co0.3O7-δ结构中结晶相Sn4+含量较高,表面晶格氧数量较多,这是烧绿石逆负载型催化剂具有良好甲烷催化燃烧性质的主要原因.  相似文献   

3.
利用完全液相法分别制备了CuZr和La,Mn促进的CuZr浆状催化剂,考察了催化剂在合成气一步合成二甲醚反应中的催化性能,并采用NH3程序升温脱附、X射线粉末衍射、N2吸附-脱附、X射线光电子能谱和程序升温还原等对其进行了表征.结果表明,在利用完全液相法制备的La-Mn-CuZr催化剂中,La和Mn的加入可促进催化剂活...  相似文献   

4.
采用浸渍法制备了不同La2O3含量的Pd密偶催化剂.使用低温N2吸附-脱附、X射线衍射、H2程序升温还原、CO化学吸附和X射线光电子能谱等技术考察了La2O3对催化剂性能的影响.模拟汽车尾气条件考察了催化剂上丙烷的转化活性.活性测试结果表明,La2O3的添加能显著提高催化剂对丙烷的转化活性和催化剂的热稳定性.H2-TP...  相似文献   

5.
采用共沉淀法制备了Ce0.1+xTi0.5-xAl0.2Y0.1La0.1O1.8(0≤x≤0.4)材料, 并对所制备的材料进行了X射线衍射(XRD)和X射线光电子能谱(XPS)的表征, 测定了材料的比表面积(BET法)和储氧量(OSC), 同时采用氢气程序升温还原(H2-TPR)和氨气程序升温脱附(NH3-TPD)研究了材料的还原性能和表面酸性. 研究结果表明, Ce/Ti摩尔比大于1∶2的材料能形成立方萤石结构的固溶体, Ce/Ti摩尔比为1时, 材料表面Ce4+/Ce3+摩尔比达到最大; 随着Ce/Ti摩尔比的增大, 材料的储氧能力先增大后减小, 而TPR还原峰温则是先减小后增大, 当Ce/Ti摩尔比为1时, 材料的储氧量达到最大, 为660 μmol/g; 还原峰峰温最低, 为616 ℃. 以制备的材料为载体制备了一系列Pt/Ce0.1+xTi0.5-xAl0.2Y0.1La0.1O1.8三效催化剂, 并对催化剂进行了活性评价. 活性测试结果表明, 以Ce/Ti比为1的载体材料制成的催化剂对C3H8, CO和NO的起燃温度分别为236, 147和228 ℃, 表现出了优异的温度特性.  相似文献   

6.
 采用柠檬酸络合-有机模板剂分解法制备了(La+Co)/(La+Co+Zr)原子比为0.5的La-Co-Zr-O催化剂,并与传统的共沉淀法制备的La-Co-Zr-O催化剂进行比较. N2物理吸附结果表明,采用模板剂法制备的催化剂样品具有较大的比表面积(96.6~117.6 m2/g)和十分均匀的孔径(3.5~4.3 nm); X射线衍射、X射线光电子能谱和X射线吸收精细结构表征结果一致表明,催化剂中活性组分主要为高分散的Co3O4微晶(粒径为23~33 nm), 模板剂法制备的催化剂中所有组分的分散性均优于共沉淀法制备的催化剂. 程序升温还原实验结果表明,采用聚乙二醇辛基苯基醚与十六烷基三甲基溴化铵为混合模板剂制备的催化剂中Co3O4更容易被还原. Co-O 键的活动度与催化剂催化氧化反应的活性密切相关.  相似文献   

7.
采用溶胶-凝胶法(SG)制备了掺杂少量La或Ce的Pt/Al2O3贵金属催化剂和In2O3/Al2O3氧化物催化剂, 并考察了La或Ce对催化剂的比表面和晶相结构和丙烯在这些催化剂上选择性还原NO的活性. 结果表明, 掺杂少量的La或Ce, 可以改变催化剂的热稳定性, 富氧条件下丙烯选择性催化还原NO的反应中, La或Ce的掺杂对催化活性和催化活性温度窗口没有明显改善.  相似文献   

8.
采用共沉淀法和胶溶法分别制备了高性能的储氧材料Ce0.45Zr0.45Y0.07La0.03O1.95(OSM)和耐高温高比表面的La-Ba-Al2O3,并以它们为载体,制备了一系列整体式铁基催化剂.考察了该系列催化剂对甲烷稀薄燃烧的催化性能.并用低温N2吸附-脱附,储氧量(OSC)测试,X射线衍射(XRD)和H2程序升温还原(H2-TPR)等测试手段考察了不同Ce0.45Zr0.45Y0.07La0.03O1.95/La-Ba-Al2O3质量比对催化剂特性的影响.活性测试结果表明,当Ce0.45Zr0.45Y0.07La0.03O1.95/La-Ba-Al2O3质量比为1:1时新鲜和老化催化剂的活性均最好,新鲜催化剂可在50000h-1的高空速条件下使含量为1%(体积分数)的甲烷在446℃起燃,553℃完全转化;低温氮气吸附-脱附测试结果和H2-TPR表明,不同的Ce0.45Zr0.45Y0.07La0.03O1.95/La-Ba-Al2O3质量比使催化剂表现出不同的织构性能和还原性能;XRD测试结果表明,OSM以均一固溶体存在,Fe高度分散在载体上.综合以上表征手段得出:合适的Ce0.45Zr0.45Y0.07La0.03O1.95/La-Ba-Al2O3质量比导致催化剂具有优异的稀薄甲烷催化燃烧活性和热稳定性.  相似文献   

9.
采用共沉淀法制备了Ce Zr YLa+La Al纳米复合载体,以三种方法制备了一系列Pt-Rh/Ce Zr YLa+La Al催化剂.对所制样品进行了N2吸附-脱附、粉末X射线衍射、X射线光电子能谱和H2程序升温还原的表征.并考察了三种方法所制得催化剂的理论空燃比天然气汽车尾气净化性能.结果表明,三个催化剂的活性顺序为Cat3≈Cat2Cat1,其中Cat3具有最低的CO和NO起燃温度(T50),分别为114 oC和149 oC,最低的CH4和CO完全转化温度(T90),分别为398 oC和179 oC,以及最佳的CH4和CO温度特性,ΔT(T90–T50)值分别为34 oC和65 oC.Cat2具有最低的CH4起燃温度(342°C)和最低的NO完全转化温度(174°C).Cat1具有最差的转化活性,说明物理混合法制备的催化剂(Cat3和Cat2)性能优于共浸渍法制备的催化剂(Cat1).这是由于物理混合法制备的催化剂,Pt和Rh均匀分散在载体表面,两者物理接触共同参与CH4/CO/NO三种污染物的转化.相反,共浸渍法制备的催化剂,Pt和Rh之间存在较强的相互作用,改变了Pt的电子状态,而且形成了表面Pt富集的Pt-Rh双金属颗粒覆盖了Rh活性位,从而降低催化活性;同时,对于通过物理混合法并进一步添加助剂所制备的Cat3,XRD结果显示助剂Zr4+进入了铈锆固溶体晶格,产生晶格缺陷;XPS结果显示Cat3具有最高的Ce3+/Ce比例.这些都有利于提高催化剂的氧流动性,从而提高催化剂活性并拓宽空燃比窗口.  相似文献   

10.
采用分步浸渍法制备了Ni-SiW12-Ce/Al-MCM-41双功能催化剂,通过X射线衍射(XRD)、BET和扫描电子显微镜(TEM),H2-TPR等方法对催化剂进行了表征.在常压连续流动固定床气固反应装置上,研究了催化剂的正庚烷临氢异构化反应性能,考察了催化剂制备条件对正庚烷临氢异构化反应效果的影响.结果表明,Ce的掺入改善了活性组分Ni的分散性,优化了催化剂庚烷异构化性能,同时增加了催化剂的稳定性.在Ce含量为0.8%、硅钨酸含量为20%、Ni含量4%、还原温度为400℃、还原氢气流速50 mL/min的条件下制备的催化剂的效果最好.以4%Ni-20%SiW12-0.8%Ce/Al-MCM-41为催化剂,当庚烷转化率为22.3%时,异庚烷选择性达到65.4%.  相似文献   

11.
Mesoporous molecular sieves Si-MCM-41 (purely siliceous) and Ti-MCM-41 (partly covered with a surface layer of TiO2) were functionalized with phosphate groups by treatment with POCl3 (denoted -MCM-41(P)and Ti-MCM-41(P), respectively). With the use of TEM, X-ray diffraction, and N2 adsorption, it was shown that the initial hexagonal structure, the high specific surface area, and porosity are retained in the functionalized materials but are not as good as in the starting materials. 1H MAS NMR and 31P MAS NMR revealed that the surface of Si-MCM-41(P) consists of silicon phosphate and pyrophosphate species. That of Ti-MCM-41(P) additionally contains titanium dihydro-, hydro-, and pyrophosphate species, the latter being predominant. TPD of adsorbed ammonia for Si-MCM-41(P) and Ti-MCM-41(P) showed that functionalization leads to the creation of moderate and strong acid sites. A combination of mesoporous structure with acidic properties makes the MCM-41 functionalized with phosphate groups promising for use as solid acid catalysts.  相似文献   

12.
将Pt/Si-MCM-41用于H2选择催化还原(H2-SCR)消除NO的反应. X射线衍射分析、N2吸附/脱附、氢吸附和透射电镜等分析结果表明,介孔Si-MCM-41具有大的比表面积和孔体积有利于活性组分Pt的分散, Pt/Si-MCM-41催化剂在富氧和80000 h-1空速的条件下,其H2-SCR低温活性在100 ℃达到60.1%,优于Pt/Si-ZSM-5和Pt/SiO2催化剂,其选择性在120 可达70%. 当Si-MCM-41的介孔结构被破坏时,H2-SCR反应活性明显下降,最大活性在120 ℃仅为15%. 漫反射红外光谱(DRIFTS)测试表明, —NO3物种是Pt/Si-MCM-41催化剂在H2-SCR反应中的主要中间物种.  相似文献   

13.
Peng Wu 《Acta Physico》2008,24(3):369-374
It was found that Si-MCM-41 mesoporous molecular sieves as a support of noble metal Pt could be used for the selective catalytic reduction of NO by hydrogen (H2-SCR) under lean-burn conditions. Pt/Si-MCM-41, together with Pt/Si-ZSM-5 and Pt/SiO2, was characterized by X-ray diffraction analysis (XRD), nitrogen adsorption/desorption, hydrogen adsorption, and transmission electron microscopy (TEM). The results indicated that Pt/Si-MCM-41 had the best H2-SCR activity in comparison with Pt/Si-ZSM-5 and Pt/SiO2 catalysts and that the maximum conversion of NO was up to 60.1% at 100 °C and a gas hourly space velocity (GHSV) of 80000 h-1 under lean-burn conditions. Characterization showed that the large surface area and pore volume of MCM-41 favored the dispersion of Pt. The maximum NO conversion of Pt/Si-MCM-41 catalyst decreased obviously to 15% at 120 °C when the pore structure of Si-MCM-41 support was destroyed. The reaction mechanism over Pt/Si-MCM-41 was investigated using in situ diffuse reflectance infrared spectroscopy (DRIFTS), which revealed that the main reaction intermediates should be nitrate species during NO reduction.  相似文献   

14.
采用水热法合成纯硅介孔分子筛Si-MCM-41, 并用浸渍法将磷钨酸(PWA)负载到介孔分子筛Si-MCM-41上, 制得了磷钨酸负载量不同的催化剂x%PWA/MCM-41. 利用XRD, FT-IR, Py-IR, BET, TEM对载体和催化剂进行分析. 结果表明, 负载后的PWA颗粒粒径明显减小, 粒径约为10个纳米, PWA在载体表面实现了均匀分布, 通过叔丁醇和乙醇在高压反应釜内生成乙基叔丁基醚的反应测试催化剂的催化性能. 结果表明, 负载型催化剂和纯PWA相比, 前者使叔丁醇(TBA)的转化率、ETBE的选择性有很大提高, 当磷钨酸负载量为30%时TBA的转化率最大. 最优的催化剂制备及反应条件是: 载体550 ℃煅烧脱模, PWA负载量为30%, 催化剂煅烧温度为300 ℃, 醚化反应温度为120 ℃, 乙醇与叔丁醇的摩尔比为2∶ 1, 催化剂的用量为1.4 g.  相似文献   

15.
用TRP技术研究了以全硅MCM-41(Si-MCM-41)和HNO3交换的全硅MCM-41(H-MCM-41)为载体制备的Ni-Mo、Co-Mo和Ni-W加氢脱硫(HDS)催化剂的还原性能,并以0.8(wt)%二苯并噻吩(DBT)的十氢萘溶液为模型化合物,在高压固定床反应器上考察了上述催化剂的加氢脱硫(HDS)反应性能。结果表明,Si-MCM-41经稀HNO3交换后,所担载的Ni-Mo和Ni-W催化剂还原性能、HDS活性和加氢活性有显著变化,但对Co-Mo催化剂影响不大。这说明在Ni-Mo/H-MCM-41和Ni-W/H-MCM-41中可能存在氢溢流现象,DBT的HDS活性与载体表面酸性和氢溢流有关。  相似文献   

16.
张波  汤明慧  袁剑  吴磊 《催化学报》2012,33(6):914-922
采用浸渍法制备了Si-MCM-41和Al-MCM-41(Si/Al=50)介孔分子筛,SiO2,γ-Al2O3及MgO等负载的ZrO2催化剂,考察了其在以异丙醇为氢源苯甲醛Meerwein-Ponndorf-Verley(MPV)还原反应中的催化活性,并与纯ZrO2的催化活性进行对比.同时,采用X射线衍射、N2吸脱附法、X射线光电子能谱、紫外-可见漫反射光谱和吡啶原位吸附红外光谱等手段表征了催化剂.结果表明,ZrO2负载于Si-MCM-41,Al-MCM-41和SiO2后,催化活性明显提高,这归因于ZrO2与载体间存在强相互作用形成ZrOSi键,使催化剂表面ZrOH数量显著增多,Lewis酸中心强度增强,并出现Brnsted酸中心,三种催化剂的活性高低次序是5%ZrO2/Si-MCM-41>5%ZrO2/Al-MCM-41>5%ZrO2/SiO2.而5%ZrO2/Al2O3和5%ZrO2/MgO基本无催化活性,可归因为ZrO2与γ-Al2O3的弱相互作用使5%ZrO2/Al2O3的酸性与γ-Al2O3类似,ZrO2与MgO的强相互作用使5%ZrO2/MgO基本无酸性.  相似文献   

17.
以Si O2、全硅MCM-41(Si-MCM-41)、通过机械混合Si-MCM-41与ZSM-5得到的Z-MCM-41-M以及通过在ZSM-5外部包覆MCM-41制备得到的Z-MCM-41四种材料为载体,制备了四种负载型Pd催化剂。采用XRD、HRTEM、N2吸附-脱附、NH3-TPD手段对Pd催化剂进行了表征;以二苯并噻吩(DBT)为模型化合物,在固定床反应器上对四种催化剂的加氢脱硫(HDS)活性、加氢路径选择性和加氢裂化活性进行了考察,研究了不同类型载体对Pd催化剂加氢脱硫性能的影响。结果表明,载体的性质会显著影响负载型Pd催化剂的加氢脱硫性能。载体的比表面积对负载型Pd催化剂加氢脱硫活性影响不大,但是HYD路径的选择性与载体的孔道结构有关;具有介孔孔道结构有利于加氢路径选择性的提高。酸性载体负载的Pd催化剂表现出较好加氢脱硫活性和加氢选择性,这与氢溢流有关。介孔材料的孔道结构与微孔沸石的酸性有机结合,所得到的Z-M CM-41复合材料是是潜在的贵金属Pd加氢脱硫催化剂优良载体,可有效提升其加氢脱硫活性。  相似文献   

18.
Liquid phase benzylation of benzene by benzyl chloride to diphenyl methane over InCl3, GaCl3, FeCl3 and ZnCl2 supported on commercial clays (viz. Montmorillonite-K10, Montmorillonite-KSF and Kaolin) or on high silica mesoporous MCM-41 (at 60, 70 and 80 °C) has been investigated. The supported InCl3, GaCl3 and FeCl3 showed high activity for the benzylation of benzene. The redox function created due to the impregnation of the clays or Si-MCM-41 by InCl3, GaCl3, FeCl3 or ZnCl2 seems to play a very important role in the benzylation process. Among the catalysts, the InCl3/Mont.-K10 showed both high activity and high selectivity for the benzylation. The activity of this catalyst for the benzylation of different aromatic compounds is in the following order: benzene>toluene>mesitylene>anisole. The InCl3 (or GaCl3)/Mont.-K10 (or Si-MCM-41) catalyst showed high benzene benzylation activity even in the presence of moisture in the reaction mixture. The catalyst can also be reused in the benzylation for several times. Kinetics of the benzene benzylation (using excess of benzene) over the supported metal chloride catalysts have also been thoroughly investigated. A plausible reaction mechanism for the benzylation over the supported metal chloride catalysts is proposed.  相似文献   

19.
Moderate basic sites could be created onto mesoporous Si-MCM-41 materials by postsynthesis modification with highly dispersed La2O3. The La2O3-modified MCM-41 materials (designated here as LaM) have been characterized by Fourier transform infrared spectroscopy, temperature-programmed desorption, X-ray photoelectron spectroscopy, X-ray diffraction (XRD), and N2 adsorption/desorption and have been tested as model adsorbents for CO2 adsorption. XRD and N2 adsorption results showed that all LaM materials still maintained their uniform hexagonal mesoporous structure even after postsynthesis modification with La2O3 loading up to 20 wt %. Although the surface area, pore size, and pore volume of LaM materials decreased with increasing La2O3 loading, their capacity for CO2 storage could be significantly improved when La2O3 loading was increased from 0 to 10 wt %. Unidentate and bidentate carbonates have been identified by in situ FTIR as the two types of CO2 species adsorbed on LaM surface. The LaM material also possesses good thermal stability, allowing the model adsorbent to be regenerated at high temperature and recyclable.  相似文献   

20.
A complex moiety containing copper (II) has been anchored covalently into the organic-modified Si-MCM-41 to prepare a new catalyst. The amine group containing organic moiety 3-aminopropyl-triethoxysilane has been first anchored on the surface of Si-MCM-41 via silicon alkoxide route. The amine group upon condensation with salicyldehyde affords a bidentate ligand in the mesoporous matrix for anchoring copper(II) ions. The prepared catalyst has been characterized by UV-vis, electron paramagnetic resonance (EPR), and infrared (IR) spectroscopic analysis, small-angle X-ray diffraction, and N2 sorption study. A remarkable difference in the pore structure has been observed after the immobilization of copper(II) complex in Si-MCM-41. The catalyst showed excellent catalytic efficiency in epoxidation reactions with various olefinic compounds including styrene and allyl alcohol, using tert-BuOOH as oxidant. Notably, styrene shows unprecedented high conversion (97%) as well as epoxide selectivity (89%) with tert-BuOOH over the Cu-MCM-41 catalyst.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号