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1.
采用3种不同的浸渍过程制备了系列WO3改性MnOx/TiO2催化剂,并采用BET比表面积测试、X射线衍射、拉曼光谱、H2程序升温还原、高分辨扫描电镜和原位红外光谱等技术进行表征.结果显示,一步浸渍法和先钨后锰的分布浸渍法制备的催化剂中,Mn和W的协同作用提高了活性组分的分散状态,并阻止了钛载体的转晶;在所有的Mn基催化剂中,Mn物种主要以Mn2O3形式存在,但在15%MnOx-5%WO3/TiO2中出现了少量的MnO2;WO3的加入大大增强了催化剂的还原能力,提高了其表面酸位尤其是B酸的数量与强度,并促进了活性中间物(NH2)的生成.表面Lewis酸在低温SCR反应起主要作用,并且发现NH2也是活性很高的物种.在NH3低温催化还原NO的反应中,一步浸渍法制备的催化剂活性最高.  相似文献   

2.
刘涛  王奂祎  贺站锋  王丹  蒋毅 《合成化学》2013,(4):410-414,419
采用等体积浸渍法制备了系列WO3/Al2O3-TiO2催化剂(CatwT),其结构和性能经XRD,TG,N2-BET和NH3-TPD表征。以甘油气相脱水制备丙烯醛为探针反应,考察了CatwT的催化活性。结果表明,WO3负载量为20%(w=20%),于500℃焙烧4 h制得的催化剂Cat25000具有最佳的催化活性,甘油转化率和丙烯醛选择性分别为100%和82.2%;CatwT的催化性能与其表面积、总酸量具有很好的相关性,WO3促进了总酸量增加,WO3晶相为催化剂活性相。  相似文献   

3.
采用等体积浸渍法制备了Mn-Fe/CeO2-TiO2催化剂,考察了不同焙烧温度对其NH3选择性催化还原(SCR)NO活性及催化剂性能的影响。并用N2吸附-脱附,X射线衍射(XRD)和X射线光电子能谱(XPS)等手段对催化剂进行了表征。活性结果表明,随着焙烧温度的升高,Mn-Fe/CeO2-TiO2催化剂的催化活性先升高后降低。其中焙烧温度为500℃时Mn/CeO2-TiO2的NH3-SCR活性最佳,该催化剂在113~250℃之间表现出了良好NO去除效率。表征结果表明,500℃焙烧时,催化剂中Fe和Mn物种在CeO2-TiO2表面的分散效果最好。500℃焙烧时Mn-Fe/CeO2-TiO2表面Mn以+4价存在,Fe以+3、+2价存在,而Ce以+4、+3存在。  相似文献   

4.
用于苯催化燃烧的Cu-Mn-O/Ce/γ-Al_2O_3-TiO_2催化剂   总被引:2,自引:0,他引:2  
采用不同的浸渍法制备了负载型催化剂Cu-Mn-O/Ce/γ-Al2O3-TiO2,应用X射线粉末衍射(XRD)、低温液氮吸附(BET)、H2程序升温还原(H2-TPR)和X射线光电子能谱(XPS)等测试技术对催化剂进行了表征。在200~500℃考察了催化剂催化燃烧较高浓度的苯(体积分数为3.6%)反应中的催化性能。结果表明,15%CuMn2Ox/Al2O3-TiO2催化剂(CuMn2Ox质量分数为15%)在300℃苯的转化率达到79%,其低温催化活性明显高于单独负载氧化铜或氧化锰的催化剂。而采用共浸渍法制备的催化剂15%CuMn2Ox-15%CeO2/Al2O3-TiO2在300℃苯的转化率达81%,其催化活性明显高于分步浸渍法制备的催化剂。CeO2的添加更利于提高共浸渍法制备的催化剂中各活性组分的分散度和相互作用。  相似文献   

5.
刘莹  王胜  高典楠  王树东 《催化学报》2012,33(8):1354-1359
采用浸渍法制备了Ni掺杂的Pd/Al2O3催化剂,考察了其低浓度甲烷催化燃烧活性和水热稳定性.结果表明,随着Ni的引入及其含量的增加,Pd/Al2O3催化剂性能明显提高,Ni含量至20%时,在0.4%CH4,4%H2O和空气平衡的原料气组成,80000h-1空速和600oC条件下反应150h后,CH4转化率仍能保持在97.5%以上.X射线衍射、H2程序升温还原、NH3程序升温脱附和透射电镜等结果表明,NiAl2O4晶相的形成改善了载体酸性和活性组分的分散度,从而提高了催化剂性能.  相似文献   

6.
汪颖军  刘成双  罗洪君  李小辉 《应用化学》2010,27(10):1182-1187
采用溶胶凝胶法制备了TiO2-Al2O3复合载体,用分步浸渍法制备了NiO/WO3/TiO2-Al2O3催化剂。 在常压连续流动固定床反应器上考察了NiO/WO3/TiO2-Al2O3对正庚烷临氢异构化反应的催化性能。 研究了催化剂中WO3含量、Ni含量、焙烧温度和还原温度及催化反应温度对临氢异构化反应的影响。 采用XRD和BET方法对催化剂进行了表征。 结果表明,当w(WO3)=25%、w(Ni)=10%时,所制备的NiO/WO3/TiO2-Al2O3催化剂对正庚烷异构化反应的催化性能最好,活性可达15.50%,选择性可达84.06%。  相似文献   

7.
分别用溶胶凝胶法和分步沉淀法制备了MnOx+γ-Al2O3和MnOx/γ-Al2O3,用等体积浸渍法将等量的Pd(NO3)2分别浸渍于其上,再将它们分别涂覆于堇青石上,得到不同物理化学性质的整体式催化剂,并采用X射线衍射、X射线光电子能谱、程序升温还原和低温N2吸附-脱附等技术对催化剂进行表征.结果表明,制备方法和MnOx焙烧温度明显影响催化剂中MnOx的物相、表面Mn物种和表面活性氧物种的分布及织构性质.活性测试结果表明,两种制备方法得到的催化剂于16–90 oC,380000–580000 h–1条件下均可将0.6μL·L–1 O3完全分解;尤其是溶胶凝胶法制备的Pd/γ-Al2O3+MnOx/γ-Al2O3催化剂分解O3活性较好,催化剂表面Mn2+:Mn3+:Mn4+=1.7:1:3(mol).  相似文献   

8.
分别用溶胶凝胶法和分步沉淀法制备了MnOx+γ-Al2O3和MnOx/γ-Al2O3,用等体积浸渍法将等量的Pd(NO3)2分别浸渍于其上,再将它们分别涂覆于堇青石上,得到不同物理化学性质的整体式催化剂,并采用X射线衍射、X射线光电子能谱、程序升温还原和低温N2吸附-脱附等技术对催化剂进行表征.结果表明,制备方法和MnOx焙烧温度明显影响催化剂中MnOx的物相、表面Mn物种和表面活性氧物种的分布及织构性质.活性测试结果表明,两种制备方法得到的催化剂于16–90 oC,380000–580000 h–1条件下均可将0.6μL·L–1 O3完全分解;尤其是溶胶凝胶法制备的Pd/γ-Al2O3+MnOx/γ-Al2O3催化剂分解O3活性较好,催化剂表面Mn2+:Mn3+:Mn4+=1.7:1:3(mol).  相似文献   

9.
为创建洁净高效的酚类化合物硝化工艺,以杂多酸H6PMo9V3O40(PMAV3)为活性组分,硅胶为载体,浸渍法制备了负载型催化剂PMAV3/SiO2,采用红外光谱、X射线衍射谱、N2吸附-脱附法及TG-DSC分析等测试技术对该催化剂的结构及热稳定性进行了表征;考察了该催化剂对多种酚类化合物硝化反应的催化性能。结果显示,该催化剂对多种酚类化合物的硝化反应具有很强的催化活性和区域选择性,产率为83.7%~94.5%,其中苯酚、邻甲酚、邻氯苯酚和邻氟苯酚以邻位硝化产物居多,水杨酸的对位硝化产物占绝对优势;负载催化剂的织构性质与载体相近,但随负载量增加,比表面积逐渐降低;PMAV3/SiO2的热稳定性好于本体PMAV3。催化剂回收容易,重复使用5次,活性基本不变。  相似文献   

10.
采用共沉淀法和浸渍法在不同条件下制备了V2O5-SO2-4/ZrO2-Al2O3系列固体超强酸催化剂. 使用乙酸与正丁醇酯化反应评价了催化剂活性,并通过热重、X射线衍射、红外光谱、比表面积测定和X射线光电子能谱等表征方法考察了催化剂结构和性能的关系. 结果表明,载体在0 ℃陈化,最终样品于600 ℃焙烧,钒浸渍浓度为0.005 mol/L, 且后于硫酸溶液浸渍时制得的催化剂活性最高,酯化率为99.71%, 且具有较好的重复使用性. V的引入使活性四方相ZrO2更加稳定, 0 ℃陈化促进了四方相ZrO2微晶生成, 600 ℃焙烧使催化剂既具有较多活性四方相ZrO2, 又具有较大比表面积,从而提高了催化剂活性. 催化剂中形成了固体超强酸结构,且改性后 S = O 吸收峰及劈裂程度增强,催化剂活性中心数目增加,Al2O3, ZrO2, SO2-4和助剂V发生了相互作用. 低温陈化虽然提高了催化剂的活性,但是略微降低了催化剂的热稳定性.  相似文献   

11.
Scandium magnesium gallide, Sc2MgGa2, and yttrium magnesium gallide, Y2MgGa2, were synthesized from the corresponding elements by heating under an argon atmosphere in an induction furnace. These intermetallic compounds crystallize in the tetragonal Mo2FeB2‐type structure. All three crystallographically unique atoms occupy special positions and the site symmetries of (Sc/Y, Ga) and Mg are m2m and 4/m, respectively. The coordinations around Sc/Y, Mg and Ga are pentagonal (Sc/Y), tetragonal (Mg) and triangular (Ga) prisms, with four (Mg) or three (Ga) additional capping atoms leading to the coordination numbers [10], [8+4] and [6+3], respectively. The crystal structure of Sc2MgGa2 was determined from single‐crystal diffraction intensities and the isostructural Y2MgGa2 was identified from powder diffraction data.  相似文献   

12.
13.
On Dialkali Metal Dichalcogenides β-Na2S2, K2S2, α-Rb2S2, β-Rb2S2, K2Se2, Rb2Se2, α-K2Te2, β-K2Te2 and Rb2Te2 The first presentation of pure samples of α- and β-Rb2S2, α- and β-K2Te2, and Rb2Te2 is described. Using single crystals of K2S2 and K2Se2, received by ammonothermal synthesis, the structure of the Na2O2 type and by using single crystals of β-Na2S2 and β-K2Te2 the Li2O2 type structure will be refined. By combined investigations with temperature-dependent Guinier-, neutron diffraction-, thermal analysis, and Raman-spectroscopy the nature of the monotropic phase transition from the Na2O2 type to the Li2O2 type will be explained by means of the examples α-/β-Na2S2 and α-/β-K2Te2. A further case of dimorphic condition as well as the monotropic phase transition of α- and β-Rb2S2 is presented. The existing areas of the structure fields of the dialkali metal dichalcogenides are limited by the model of the polar covalence.  相似文献   

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16.
TG and DTA studies on Me3SnO2PCl2, Me2Sn(O2PCl2)2 and Ph3SnO2PCl2 were carried out under dynamic argon atmosphere. The results show that the decomposition proceeds in different stages leading to the formation of Sn3(PO4)2 as a stable product. This compound was characterized by IR spectroscopy. Decomposition schemes involving reductive elimination reactions were proposed.  相似文献   

17.
The structures of the hypophosphites KH2PO2 (potassium hypophosphite), RbH2PO2 (rubidium hypophosphite) and CsH2PO2 (caesium hypophosphite) have been determined by single‐crystal X‐ray diffraction. The structures consist of layers of alkali cations and hypophosphite anions, with the latter bridging four cations within the same layer. The Rb and Cs hypophosphites are isomorphous.  相似文献   

18.
[(n‐Bu)2Sn(O2PPh2)2] ( 1 ), and [Ph2Sn(O2PPh2)2] ( 2 ) have been synthesized by the reactions of R2SnCl2 (R=n‐Bu, Ph) with HO2PPh2 in Methanol. From the reaction of Ph2SnCl2 with diphenylphosphinic acid a third product [PhClSn(O2PPh2)OMe]2 ( 3 ) could be isolated. X‐ray diffraction studies show 1 to crystallize in the monoclinic space group P21/c with a = 1303.7(1) pm, b = 2286.9(2) pm, c = 1063.1(1) pm, β = 94.383(6)°, and Z = 4. 2 crystallizes triclinic in the space group , the cell parameters being a = 1293.2(2) pm, b = 1478.5(4) pm, c = 1507.2(3) pm, α = 98.86(3)°, β = 109.63(2)°, γ = 114.88(2)°, and Z = 2. Both compounds form arrays of eight‐membered rings (SnOPO)2 linked at the tin atoms to form chains of infinite length. The dimer 3 consists of a like ring, in which the tin atoms are bridged by methoxo groups. It crystallizes triclinic in space group with a = 946.4(1) pm, b = 963.7(1) pm, c = 1174.2(1) pm, α = 82.495(6)°, β = 66.451(6)°, γ = 74.922(6)°, and Z = 1 for the dimer. The Raman spectra of 2 and 3 are given and discussed.  相似文献   

19.
Summary The ability of [MoS4]2–, anions to be used as ligands for transition metal ions has been widely demonstrated, especially with Fe2+. The present study has been restricted to linear complexes such as (NEt4)2 [Cl2FeS2MoS2] and (NEt4)2[Cl2FeS2MoS2FeCl2]. Their electrochemical properties are described: upon electrochemical reduction, these compounds yield MoS2, as a black precipitate, and an iron complex in solution, assumed to be [SFeCl2]2–. The electrochemical reduction goes through two electron transfers, coupled with the breakdown of the molecular skeleton: a DISPl and an ECE mechanism. Depending on the solvent, the following equilibrium may be observed: [Cl4Fe2MoS4]2–[Cl2FeMoS4]2–+FeCl2. The equilibrium constant, KD, was evaluated by differential pulse polarography. KD is tightly related to the donor number of the solvent.  相似文献   

20.
Wu YT  Linden A  Siegel JS 《Organic letters》2005,7(20):4353-4355
[reaction: see text] Fluoranthene 2 and heptacycle 3 are easily accessible from the reaction of diyne 1 and norbornadiene (NBD) in the presence of the rhodium catalyst. The unusual [(2+2)+(2+2)] adduct 3 was confirmed by the X-ray crystal structure analysis.  相似文献   

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