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1.
采用表面反应改性法制备了V2O5 SiO2(VSiO)表面复合物 ,用等体积浸渍法制备了VSiO担载的Cu Ni双金属催化剂 ,用IR、TPD、TPSR和微反技术研究了CO2 和CH3OH在催化剂表面上的化学吸附与反应性能.结果表明,在Cu Ni/VSiO催化剂上存在着金属位Cu Ni合金、Lewis酸位Vn 和Lewis碱位V=O三类活性中心 ;CO2 在金属位和Lewis酸位协同作用下可生成CO2卧式吸附态M -(CO) -O→Vn ,此吸附态在138℃左右可解离成M -CO和V=O ;CH3OH在Lewis酸位和Lewis碱位协同作用下可形成解离吸附态V -OCH3和V -OH ;CO2 和CH3OH在Cu Ni/VSiO催化剂表面上的反应产物主要为碳酸二甲酯(DMC)、CH2O、CO和H2O ,其生成DMC的选择性在85%以上.  相似文献   

2.
 用等体积浸渍法制备了ZrO2-SiO2(ZrSiO)表面复合氧化物负载的Cu-Ni催化剂,并用IR,TPR,TPD及微反技术考察了K2O助剂对CO2和CH3OH在Cu-Ni/ZrSiO催化剂表面上的吸附及合成碳酸二甲酯(DMC)反应性能的影响.结果表明:加入K2O助剂使CO2在催化剂表面上的吸附增强,当n(K)/n(Cu+Ni)=15%时,CO2在催化剂表面上吸附后生成K2CO3;CH3OH在催化剂表面上的解离吸附态(CH3O-和H+)的吸附减弱;CO2和CH3OH在Cu-Ni/ZrSiO催化剂表面上反应的主要产物为DMC,H2O,CO和CH2O;随着K2O助剂的加入,反应转化率及DMC选择性提高,副产物(CO和CH2O)的选择性下降.根据实验结果,探讨了K2O对催化剂表面活性中心电荷分布的影响.  相似文献   

3.
CH4部分氧化制氢Ni-Cu/ZrSiO催化剂的研究   总被引:6,自引:1,他引:6  
采用表面反应改性法制备了ZrO2-SiO2(ZrSiO)表面复合物,用等体积浸渍法制备了ZrSiO负载的Ni-Cu双金属催化剂,并用IR、TPD、TPSR和微反技术考察了CH4、H2O和O2在催化剂表面上的化学吸附及反应性能。结果表明,在Ni-Cu /ZrSiO催化剂上存在着Ni-Cu金属位,Lewis酸位Znn+和碱位Zr-O-三类活性中心;CH4和H2O在金属位和Lewis酸位Znn+和碱位Zr-O-的协同作用下可形成解离吸附态; CH4、H2O和O2在Ni-Cu /ZrSiO催化剂表面上的主要反应产物为H2和CO2,选择性均在95%以上。  相似文献   

4.
ZrO2—SiO2负载Cu—Ni催化剂的CO2加氢反应性能   总被引:7,自引:0,他引:7  
采用表面反应改性法,制备了ZrO2-SiO2(ZrSiO)表面复合物载体,用等体积浸渍法制备了ZrSiO担载的Cu-Ni双金属催化剂,借助BET、TPR、IR和微反等技术,研究了ZrSiO及其负载的Ni、Cu双金属催化剂的表面构造,化学吸附及催化CO2加氢的反应性能,结果表明,ZrSiO表面主要是价联型结构,ZrO2引入SiO2表面,可以有效地促进CuO和NiO的还原,在ZrSiO负载的Cu-Ni催化剂表面的Cu或Ni位,CO2发生化学 吸附形成线、剪式、卧式吸附态,在该催化剂上CO2的加氢反应产物主要是CH3OH3、CH4、CO和H2O生成CH3OH的选择性与催化剂组成及反应条件密切相关,在适当的条件,CH3OH的选择性大于90%。  相似文献   

5.
Cu/MoO3-TiO2光催化CO2与C3H6反应合成甲基丙烯酸的性能   总被引:4,自引:0,他引:4  
梅长松  钟顺和 《催化学报》2004,25(12):937-942
 研究了Cu/MoO3-TiO2上CO2和C3H6的吸附特性及其光催化CO2与C3H6反应合成甲基丙烯酸(MAA)的性能. 结果表明,在Cu/MoO3-TiO2催化剂表面存在金属Cu位、Lewis酸位Mo6+和Ti4+以及Lewis碱位Mo-O-Ti的桥氧和Mo=O的端氧三类活性中心. 在金属Cu位和Lewis酸位Ti4+(Mo6+)的协同作用下,CO2形成活性较高的卧式吸附态Cu-(CO)-O→Ti4+(Mo6+),C3H6的β-H和β-C分别吸附在Lewis碱位 Mo=O 与金属Cu位上形成Cu-C(CH2)(CH3)-H→O=Mo吸附态. Cu/MoO3-TiO2催化剂吸收阈值蓝移和光吸收量的提高均有利于其催化活性的提高,Cu/10%MoO3-TiO2 光催化剂的催化活性优于其它MoO3含量的催化剂,光量子产率达22.8%,在110 ℃,0.1 MPa,空速200 h-1和125 W紫外灯辐照下,C3H6转化率为8.4%,MAA选择性超过95%. 提出了催化剂光促表面催化CO2与C3H6合成MAA的反应机理.  相似文献   

6.
Cu/V2O5-TiO2的光催化丙烯和二氧化碳合成MAA反应性能   总被引:4,自引:0,他引:4  
梅长松  钟顺和  肖秀芬 《分子催化》2005,19(3):161-166,i001
用IR、TPD、UV-Vis和微型光反应器技术研究了CO2和C3H6在Cu/V2O5-TiO2表面上的吸附特性和光催化反应性能.实验结果表明:在Cu/V2O5-TiO2催化剂表面存在金属位Cu、Lewis酸位V^5 和Ti^4 以及Lewis碱位V-O-Ti的桥氧和V=O的端氧三类活性中心;在金属位Cu和Lewis酸位Ti^4 (或V^5 )协同作用下.CO2形成活性较高的卧式吸附态Cu-(CO)-O→Ti^4 (或V^5 ).C3H6的β-H和β-C分别吸附在Lewis碱位V=O与金属位Cu上形成Cu-C(CH2CH3)-H→O=V吸附态;Cu/V2O5-TiO2催化剂的吸光阈值红移和光吸收量的提高均有利于其光催化活性的提高;担载10%V2O5的光催化剂催化活性优于其它含量的催化剂,其光量子效率达到15.1%;C3H6转化率为5.5%,MAA选择性超过95%.根据实验结果.提出了光促表面催化合成反应的机理.  相似文献   

7.
Cu/NiO-MoO3/SiO2光催化CO2与CH3OH合成碳酸二甲酯的反应性能   总被引:8,自引:0,他引:8  
孔令丽  钟顺和  柳荫 《催化学报》2005,26(10):917-922
 采用表面改性法制备了MoO3-SiO2复合氧化物,用等体积浸渍法制备了Cu/NiO-MoO3/SiO2光催化剂,并用XRD, Raman, IR, TPD-MS, UV-Vis DRS和光促表面反应研究了催化剂的结构、化学吸附性能、吸光性能和光促CO2与CH3OH合成碳酸二甲酯(DMC)的反应性能. 结果表明, Cu和NiO的引入提高了MoO3在SiO2表面的分散度,且Cu和NiO在MoO3-SiO2表面分散均匀; 在金属Cu位和Lewis酸位Mo6+(或Ni2+)的协同作用下, CO2在催化剂表面形成活性较高的的卧式吸附态, CH3OH在催化剂表面形成分子吸附态和解离吸附态; NiO与MoO3复合后部分形成了 Mo-O-Ni 键联,提高了对光的吸收强度; 金属Cu的负载扩展了材料在可见光范围的吸收; 与热表面催化相比,光催化反应在较低的温度下就能显著进行,并提高了CH3OH的转化率,在110 ℃常压和空速300 h-1的条件下,CH3OH转化率可达13.9%,DMC选择性可达90.1%.  相似文献   

8.
用等体积浸渍法制备了MoO3 SiO2 (MoSiO)表面复合氧化物负载的Cu Ni K2 O催化剂。利用IR ,TPR ,TPD以及微反技术研究了K2 O助剂对CO2 和CH3OH在Cu Ni MoSiO催化剂表面上吸附和合成DMC(碳酸二甲酯 )反应性能的影响。结果表明 :K2 O助剂的加入 ,使CO2 在催化剂表面吸附强度增加 ,当K2 O含量达Cu Ni总量的 15 %时 ,CO2 在催化剂表面上吸附后生成K2 CO3;CH3OH在催化剂表面上的解离吸附态 (CH3O- H )的吸附强度减弱 ;CO2 和CH3OH在Cu Ni K2 O MoSiO催化剂表面反应主要产物为DMC ,H2 O ,CO和CH2 O。随着K2 O助剂的加入 ,反应转化率在 10 %之前增加 ,之后下降 ,DMC选择性稍有提高。副产物 (CO和CH2 O)的选择性下降。根据实验结果探讨了K2 O对催化剂表面活性中心的电荷分布的影响。  相似文献   

9.
KF在CO2和CH3OH直接合成DMC负载型金属催化剂中作用的研究   总被引:4,自引:0,他引:4  
用表面改性和离子交换法制备了MgSiO载体,在其中加入KF助剂制备了MgSiO-KF载体,用等体积浸渍法制备了负载型金属铜催化剂。利用IR、化学分析技术,对载体和负载型金属催化剂进行了表征;采用微反技术,考察了催化剂催化CO2与CH3OH反应的性能,并着重研究了KF助剂对催化性能的影响。结果表明,MgSiO中Mg与Si之间形成双齿型配位结构,KF中的F可以取代Mg-Si-O中的桥O形成-Mg-F和K-O-Si结构。CO2在Cu位上形成线式和剪式吸附态,在金属位与Lewis酸活性位Mg^2 的协同作用下形成卧式吸附态;CH3OH在催化剂上形成分子吸附态和解离吸附态。在催化剂中引入适量助剂KF,可明显提高催化活性。  相似文献   

10.
SnO_2-SiO_2负载Cu、Ni催化剂的CO_2加氢反应性能   总被引:1,自引:1,他引:0  
采用表面反应改性法制备了SnO2 SiO2 (SnSiO)表面复合物载体 ,用等体积浸渍法制备了SnSiO担载的Cu Ni双金属催化剂。借助BET、XRD、TPR、IR和微反等技术研究了SnSiO及其负载的Ni、Cu双金属催化剂的表面构造、化学吸附及CO2 加氢反应性能。结果表明 :SnSiO是SnO2 单分子层价联于SiO2 表面的复合氧化物 ,仍保持类似SiO2载体的孔结构和比表面 ;SnO2 引入SiO2 表面后可以有效地促进CuO、NiO的还原 ,还原后成为负载在SnSiO载体表面的Cu Ni合金 ;CO2 在负载型Cu Ni合金表面Cu或表面Ni位上发生化学吸附 ,形成线式和剪式吸附态 ;CO2 在催化剂上的加氢反应产物主要是CH3 OH、CH4 、CO和H2 O ,生成CH3 OH的选择性与催化剂组成及反应条件密切相关。Cu Ni催化剂 ,在 0 5MPa ,170℃ ,H2 /CO2 (mol/mol)为 3的条件下 ,CH3 OH的选择性达到 84 6 %。  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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