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1.
比较了微波固相法、普通加热法和简单混合法制备的ZnCl2/NaY及溶液离子交换法制备的ZnNaY在月桂烯与丙烯醛Diels-Alder反应中的催化性能,发现微波固相法制备的催化剂表现出最高的环加成选择性和区域选择性.通过对微波固相法制备的催化剂中ZnCl2负载量的考察,揭示了微波诱导ZnCl2在NaY分子筛表面形成了不同催化活性中心的特点,分散在分子筛表面的ZnCl2具有更高的催化活性和区域选择性.微波辐射可成功地将ZnCl2固载于NaY分子筛中,当ZnCl2负载量为6.3%时,ZnCl2与NaY分子筛主要发生固态离子交换反应;当ZnCl2负载量达25%时,催化活性提高了3倍,区域选择性提高了1倍以上.而且,以微波固相法制备的ZnCl2/NaY催化剂,其环加成选择性和区域选择性随反应温度的升高而下降.  相似文献   

2.
微波固相法制备ZnCl2/MCM-41催化剂及其催化性能   总被引:7,自引:0,他引:7  
采用微波固相法、普通加热法和溶剂分散法等不同方法制备了ZnCl2/MCM-41催化剂,以XRD、FT-IR和TG-DSC等表征手段,比较了不同方法制备的催化剂中ZnCl2在分子筛表面的存在状态.XRD测定结果表明,微波固相法和溶剂分散法制备的样品可使ZnCl2完全分散于MCM-41分子筛表面,而加热法制备的样品中仍存在ZnCl2的晶相衍射峰.FT-IR、DSC和原子吸收光谱的测定结果表明,微波辐射可使ZnCl2与分子筛表面羟基发生固态相互作用形成O-Zn-Cl活性位,具有更加温和的Lewis酸性.考察了不同方法制备和不同ZnCl2负载量的催化剂在月桂烯与丙烯醛Diels-Alder反应中的催化性能,与普通加热法制备的催化剂相比,微波固相法与溶剂分散法制备的催化剂具有更好的催化活性和选择性,但微波固相法制备催化剂更为简单.  相似文献   

3.
采用微乳液法负载Pt制备了Pt-S2O82-/ZrO2-Al2O3(Pt-SZA-M)固体超强酸催化剂, 以正戊烷异构化反应为探针, 对比了微乳液法和浸渍法负载Pt制备的催化剂(Pt-SZA)的异构化性能, 并采用XRD, FTIR, BET, TG-DTA, TPR和TEM对催化剂进行了表征. 结果表明, 与Pt-SZA催化剂相比, Pt-SZA-M催化剂中Pt粒子的粒径更小(4.5 nm)且尺寸更均一; Pt-SZA-M催化剂的比表面积(109.6 m2/g)比Pt-SZA催化剂(95.0 m2/g)增加了15.4%. Pt-SZA-M催化剂的初始还原温度比Pt-SZA催化剂降低了10~20℃, 表明微乳液法负载Pt可以提高催化剂的氧化活性, 提高氢分子在催化剂上的吸附解离能力. 异构化活性实验结果表明, 与Pt-SZA催化剂相比, Pt-SZA-M催化剂的低温活性得到明显改善, 在反应压力为2.0 MPa、 氢烃摩尔比为4: 1、 质量空速为1.0 h-1的条件下, Pt-SZA-M催化剂在反应温度为230℃时活性达到60.8%, 在100 h内异戊烷的收率可稳定在58.0%左右, 选择性在95.0%以上.  相似文献   

4.
庞磊  范驰  邵丽娜  易俊霞  蔡星  王健  康明  李涛 《催化学报》2014,(12):2020-2028
分别采用普通浸渍法(VWTi-con)和超声辅助浸渍法(VWTi-HUST)制备了V2O5/WO3-TiO2催化剂,并用X射线衍射、扫描电镜、拉曼光谱和X射线光电子能谱等技术对催化剂进行了表征,评价了水热老化前后两种催化剂的NH3-SCR脱除模拟柴油车尾气中NOx的反应活性,并与国外成熟商品催化剂进行了比较.结果表明,制备方法可影响V2O5/WO3-TiO2催化剂的水热稳定性,VWTi-con催化剂老化后几乎完全失活,而VWTi-HUST具有优异的水热稳定性,与国外成熟商品催化剂性能相当.与传统浸渍法相比,超声辅助浸渍法增强了活性物种和载体的相互作用,提高了活性组分的分散性等.采用该法制备的VWTi-HUST催化剂将具有较强的商业应用性;台架试验正在进行中,以期满足柴油车国IV排放标准的要求.  相似文献   

5.
SnCl4·5H2 O/C催化合成谷氨酸月桂酯   总被引:1,自引:0,他引:1  
以谷氨酸和月桂醇为原料,固体酸SnCl4·H2O/C为催化剂合成了谷氨酸月桂酯.正交实验得出最佳的反应条件为月桂醇100 mmol, n(谷氨酸) ∶ n(月桂醇)=1 ∶ 1, SnCl4·H2O/C 1.2 g, 135 ℃反应4.0 h,醇转化率97.9%.  相似文献   

6.
采用溶胶-凝胶法制备出不同配比的V2O5/TiO2-SiO2催化剂,运用低温氮吸附-脱附、XRD、FTIR对催化剂进行表征,对NH3法选择性催化还原氮氧化物(SCR)的行为及抗碱金属性能进行了研究.结果显示复合催化剂比表面积达125~413 m2·g-1,表面酸强和酸量不同程度增加,其中载体中含50%SiO2的催化剂(V5ST)表面酸量最大,在典型SCR反应温度350 ℃下Lewis酸很稳定,Bronsted 酸稍有减少.V5ST相比传统催化剂V2O5/TiO2表现出更佳SCR活性和抗中毒性能,其原因可能是部分钾优先与催化剂表面酸结合,从而降低了对钒活性物种的毒害.不同温度下失活程度的对比表明:低温条件下SCR活性主要依赖于B酸,随反应温度升高,稳定的L酸逐渐开始发挥主导作用,失活程度相应较低.  相似文献   

7.
以不同沉淀剂和铝盐与SnCl4共沉淀制备了Sn/Al2O3催化剂.考察了催化剂在富氧条件下催化丙烯选择性还原NO的性能,借助于X射线衍射(XRD)、扫描电镜(SEM)、N2吸附-脱附、吡啶吸附红外光谱(Py-IR)和程序升温还原(TPR)等方法研究了催化剂性能与结构的关系.发现以NH3.H2O和NH4HCO3为沉淀剂、NH4Al(SO4)2为铝盐制备的Sn/Al2O3催化剂催化活性最高,NO转化率达90.9%,最佳催化活性温度为350℃.该催化剂的比表面积为254 m2/g,孔体积为0.878 cm3/g,孔径分布曲线在3~8 nm出现双峰,Sn物种主要以晶态SnO2存在,且表面Lewis酸酸量增加.  相似文献   

8.
通过机械活化将快离子导体Li3 V2(PO4)3包覆在LiFePO4 表面, 制备了性能优异的复合正极材料9LiFePO4@Li3 V2(PO4)3. 用XRD, SEM, HRTEM, EDS和电化学测试等手段研究了材料的物理化学性能. 结果表明, 包覆后的材料含有橄榄石结构的LiFePO4、单斜晶系的Li3 V2(PO4)3 和正交晶系的Li3 PO4; LiFePO4颗粒表面包覆了一层Li3 V2(PO4)3, 且部分V3+进入LiFePO4晶格内部, 使其晶格参数减小, 包覆后的LiFePO4的交换电流密度和锂离子扩散系数均提高了1个数量级. 电化学测试结果表明, 包覆后的LiFePO4的倍率性能及循环性能都得到显著改善, 在1C和2C倍率下, 包覆后的LiFePO4的首次放电比容量较包覆前分别提高了34.09%和78.97%, 经150次循环后容量保持率分别提高了27.77%和65.54%; 并且5C时容量为121.379 mA·h/g(包覆前LiFePO4在5C下几乎没有容量), 循环350次后的容量保持率高达94.03%.  相似文献   

9.
以Mn(Ac)_2和Co(Ac)_2作为前驱体,导电碳Ketjenblack (KB)作为负载碳源,采用水解-水热法制备氮掺杂的MnCo_2O_4/N-KB催化剂材料,对其结构特征和碱性溶液中氧还原反应的催化性能进行表征,并进一步分析其氧还原反应活性。结果表明:MnCo_2O_4/N-KB催化剂的形态是KB骨架上生长纳米级MnCo_2O_4,并且在N-KB和MnCo_2O_4之间形成化学耦合,产生协同作用,有效提高了MnCo_2O_4/N-KB催化剂的氧还原活性。MnCo_2O_4与N-KB的质量比为1∶9时,MnCo_2O_4/N-KB催化剂在O_2饱和0.1mol·L~(-1)KOH溶液中对氧还原反应的电催化性能最佳,反应的极限电流密度为5.7 mA·cm~(-2),半波电位接近0.81 V,电子转移数为4。在相同负载量下,MnCo_2O_4/N-KB催化剂相比商用Pt/C(电流密度5.2 mA·cm~(-2),半波电位0.83 V)有着更高的极限电流密度和耐久性。  相似文献   

10.
采用溶胶-凝胶法合成了锂离子正极材料Li3V2(PO4)3/C(LVP/C)及Li2.5Na0.5V2(PO4)3/C,并用XRD、循环伏安及交流阻抗等方法,研究了大量Na+掺杂对材料结构和电化学性能影响。结果表明,大量钠离子的掺杂会使LVP结构由单斜向菱方转变。掺杂化合物Li2.5Na0.5V2(PO4)3/C在0.5 C充电1 C放电时,首次放电容量为118 mAh.g-1,50次循环后容量保持率为92.4%,并发现与单斜LVP存在多个放电平台不同,Li2.5Na0.5V2(PO4)3/C仅在3.7 V处有一个放电平台。  相似文献   

11.
phase diagrams of KCl-KBO2-K2CO3, K2MoO4-KBO2-K2CO3, and K2WO4-KBO2-K2CO3 ternary systems were studied by a calculation-experimental method and differential thermal analysis (DTA). The coordinates of ternary eutectics were determined to be E 1: 622°C, 8.5 mol % KBO2, 56.5 mol % KCl, and 35 mol % K2CO3; E 2: 710°C, 23 mol % KBO2, 43 mol % K2CO3, and 34 mol % K2MoO4; E 3: 710°C, 23 mol % KBO2, 43 mol % K2CO3, and 34 mol % K2WO4. The specific heats of melting of the eutectics were determined.  相似文献   

12.
Solubility in the Na2Cr2O7-(NH4)2Cr2O7-K2Cr2O7-H2O four-component water-salt system at 25, 50, and 75°C was studied for the first time. Phase field boundaries for individual salts and potassium and ammonium dichromate solid solutions, monovariant lines, and invariant points were determined. Experimental data were used to optimize the looped isohydric process of potassium dichromate preparation involving additional salts.  相似文献   

13.
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   

14.
马修臻  胡斌 《化学通报》2018,81(10):939-943,938
本文用高精度数字式振荡管密度计测定了288K至318K温度范围内Li2SO4 + Na2SO4 + H2O和 Li2SO4 + K2SO4 + H2O三元体系的密度。混合溶液的离子强度范围从0.1到4.5 mol.kg–1,混合溶液中Na2SO4和K2SO4的离子强度分数为0.2,0.4,0.6和0.8。用密度实验值拟合得到了不同温度下Pitzer离子相互作用模型混合参数θV和 ψV,模型的计算值与实验值的偏差在±0.002 g.cm3以内。用Pitzer模型计算了不同离子强度下三元体系的混合体积。  相似文献   

15.
MMe5(dmpe) (M = Nb or Ta, dmpe = Me2PCH2CH2PMe2) reacts with H2 (500 atm) and dmpe in THF at 60°C to give MH5(dmpe)2? NbH5(dmpe)2 readily reacts with two mol of CO or ethylene (L) to give NbHL2(dmpe)2. The exchange of the hydride ligand with the ethylene protons in NbH(C2H4)2(dmpe)2 is not rapid on the 1H NMR time scale (60 MHz) at 95°C.  相似文献   

16.
The novel, 1D semiconductor (H2NC4H8NCH2CH2NH2)(HNCH2CH2NH2)3Zn2Ge2Se8 has been synthesized under solvothermal conditions using N-(2-aminoethyl)piperazine as solvent and templating agent at 200 °C. The material was characterized by single crystal and powder X-ray diffraction, IR and Raman spectroscopy and thermogravimetric analysis. The compound consists of 1D anionic [Zn2Ge2Se8]4− chains made of alternating edge-shared [ZnSe4] and [GeSe4] tetrahedra that charged balanced by one N-(2-aminoethyl)piperazinium and three piperazinium cations. The optical properties were investigated with solid state UV–Vis/near IR spectroscopy and the results show that the solid is a medium gap semiconductor with an absorption edge at 1.8 eV.  相似文献   

17.
The phase diagrams of the NaBO2-NaCl-Na2CO3, NaBO2-Na2CO3-Na2MoO4, NaBO2- Na2CO3-Na2WO4, and NaBO2-NaCl-Na2WO4 ternary systems were studied by a calculation-experimental method and differential thermal analysis. The coordinates of ternary eutectics were determined: E 1: 612°C, 16 mol % NaBO2, 42 mol % NaCl, and 42 mol % Na2CO3; E 2: 568°C, 12 mol % NaBO2, 28 mol % Na2CO3, and 60 mol % Na2MoO4; E 3: 575°C, 12 mol % NaBO2, 32 mol % Na2CO3, and 56 mol % Na2WO4; E 4: 628°C, 8 mol % NaBO2, 20 mol % NaCl, and 72 mol % Na2WO4; and E 5: 655°C, 9 mol % NaBO2, 53 mol % NaCl, and 38 mol % Na2WO4.  相似文献   

18.
The lithium-ion-conducting inorganic solid electrolytes in the oxide systems Li2O-SiO2-P2O5 and Li2O-TiO2-SiO2-P2O5 were prepared by the solid-state reaction, and the electrolyte pellet made by cold-pressing method had diameter of 13 mm and was about 1 mm thick. Phase identification and surface morphology of the products were carried out by X-ray diffraction and scanning electron microscopy. Ionic conductivity of the pellets was investigated through ac impedance. The results show that the adding of other cations can improve the ionic conductivity of the solid electrolyte, and the sintering temperature and duration can influence the ionic conductivity. The maximum ionic conductivity in the samples is 9.9 × 10−4 S/cm in the Li2O-TiO2-SiO2-P2O5 system. Original Russian Text ? W. Li, M. Wang, Z.H. Li, X.F. Shang, H. Wang, Y.W. Wang, Y.B. Xu, 2007, published in Elektrokhimiya, 2007, Vol. 43, No. 11, pp. 1341–1345.  相似文献   

19.
This paper examines the structural changes with temperature and composition in the Sc2Si2O7-Y2Si2O7 system; members of this system are expected to form in the intergranular region of Si3N4 and SiC structural ceramics when sintered with the aid of Y2O3 and Sc2O3 mixtures. A set of different compositions have been synthesized using the sol-gel method to obtain a xerogel, which has been calcined at temperatures between 1300 and 1750 °C during different times. The temperature-composition diagram of the system, obtained from powder XRD data, is dominated by the β-RE2Si2O7 polymorph, with γ-RE2Si2O7 and δ-RE2Si2O7 showing very reduced stability fields. Isotherms at 1300 and 1600 °C have been analysed in detail to evaluate the solid solubility of the components. Although, the XRD data show a complete solid solubility of β-Sc2Si2O7 in β-Y2Si2O7 at 1300 °C, the 29Si MAS-NMR spectra indicate a local structural change at x ca. 1.15 (Sc2−xYxSi2O7) related to the configuration of the Si tetrahedron, which does not affect the long-range order of the β-RE2Si2O7 structure. Finally, it is interesting to note that, although Sc2Si2O7 shows a unique stable polymorph (β), Sc3+ is able to replace Y3+ in γ-Y2Si2O7 in the compositional range 1.86?x?2 (where x is Sc2−xYxSi2O7) as well as in δ-Y2Si2O7 for compositions much closer to the pure Y2Si2O7.  相似文献   

20.
Reactions of [Cp2Ti(btmsa)] (btmsa = bis(trimethylsilyl)acetylene) with R4Sb2 (R = Me, Me3Si) give [Cp2TiSbMe2]2 (1) or [Cp2TiSb(SiMe3)2]2 (2) respectively. [Cp2TiCl]2·2Mes4Sb2 (3) is serendipitously formed from [Cp2Ti(btmsa)] and Mes2SbH containing NH4Cl traces.  相似文献   

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