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1.
 用自燃烧法制备了钙钛矿型La0.8Sr0.2FeO3催化剂.用H2-TPR考察了催化剂表面的氧消耗过程,用程序升温表面反应(TPSR)研究了甲烷与催化剂表面氧物种的反应,用在线质谱脉冲反应和甲烷/氧切换反应研究了催化剂的晶格氧选择氧化甲烷制合成气.结果表明,催化剂上存在两种氧物种,无气相氧存在时,强氧化性氧物种首先将甲烷氧化为CO2和H2O;而后提供的氧化性较弱的晶格氧具有良好的甲烷部分氧化选择性,可将甲烷氧化为合成气CO和H2(选择性可达95%以上).在900℃下的CH4/O2切换反应结果表明,甲烷能与La0.8Sr0.2FeO3中的晶格氧反应选择性地生成CO和H2,失去晶格氧的La0.8-Sr0.2FeO3能与气相氧反应恢复其晶格氧.在合适的反应条件下,用La0.8Sr0.2FeO3催化剂的晶格氧代替分子氧按Redox模式实现甲烷选择氧化制合成气是可能的.  相似文献   

2.
Fe/MnO-ZnZSM-5双功能催化剂上合成气直接转化为芳烃的反应   总被引:4,自引:0,他引:4  
 探讨了Fe/MnO-ZnZSM-5(n(SiO2)/n(Al2O3)=50)双功能催化剂上合成气直接转化为芳烃的反应,考察了反应温度和Zn载量对CO转化率及芳烃选择性的影响.结果表明,Fe/MnO-ZnZSM-5具有良好的合成气芳构化性能,在V(CO)∶V(H2)∶V(Ar)=3∶6∶1,SV=1600h-1,p=1.1MPa,T=543K的条件下,CO转化率可达到98.1%,芳烃产物选择性可高达53.1%.催化剂经60h运转后,CO转化率仅降低0.5%,显示了良好的稳定性和应用前景.  相似文献   

3.
用于浆态床FT合成的Fe-Cu-K-Si催化剂的初步考察   总被引:1,自引:2,他引:1  
使用连续共沉淀反应器制备了浆态床FT合成用的Fe-Cu-K-Si催化剂。考察了钾含量、粘合剂的添加以及催化剂还原方法等对催化剂性能的影响。1L高压搅拌釜的试验结果表明粘合剂添加方法B和低压CO还原条件下的No.9催化剂性能较好。在质量空速为无载体Fe-Cu-K催化剂1.5倍的条件下,No.9催化剂的合成气转化率,C1^ 和C5^ 产物的产率均高于无载体Fe-Cu-K催化剂,甲烷选择性为3.2%。特别在富CO合成气条件下C5^ 的单程产率达到130g/m^3(CO H2)以上。假设对氢为一级反应动力学的条件下,使用表观速率常数对o.9催化剂的反应活性的经时变化作了考察,结果表明表观速率常数较合成气转化率能相对地反映不同反应条件下的催化剂活性。  相似文献   

4.
Ni/Al2O3催化剂上甲烷部分氧化制合成气   总被引:19,自引:2,他引:19  
研究了Ni/Al2O3催化剂对甲烷部分氧化制合成气的反应性能.结果表明,催化剂在其活性组份Ni为10%时反应性能最好.条件实验表明,在600~900℃范围内,甲烷转化率和CO、H2的选择性随温度升高而增加;转化率和选择性在甲烷空速≤1.5×105h-1时基本不变,空速>1.5×105h-1时,转化率和选择性有所下降.随着压力的增加(0.05~0.40MPa),转化率和选择性下降.SEM和化学分析结果证明在反应过程中,Ni组份存在烧结和流失现象.  相似文献   

5.
Co-CeO2/SiO2催化剂上的费-托反应性能   总被引:9,自引:0,他引:9  
李强  沈师孔 《催化学报》2002,23(6):513-516
 考察了反应条件对Co-CeO2/SiO2催化剂上费-托合成反应性能的影响,并对催化剂进行了1000h稳定性和再生性能实验.结果表明,添加铈助剂后,催化剂具有良好的稳定性和再生性能,整个过程中CO转化率为89.7%,C5+烃类(主要组成为C10~C20直链烃)选择性为81.0%,链增长几率为0.90.催化剂的活性表面被反应产物蜡覆盖时,阻碍了反应物与活性中心的结合,是导致催化剂活性降低的主要原因.  相似文献   

6.
Ni/ZrO2催化剂上甲烷水蒸气重整反应的研究   总被引:4,自引:2,他引:4  
研究了Ni/ZrO2催化剂对甲烷水蒸气重整制合成气的反应性能。考察了催化剂的还原温度、载体焙烧温度以及反应温度、原料配比和空速等对催化剂性能的影响。利用XRD、TEM、XPS等手段对催化剂的织构形貌进行了表征。研究表明,Ni/ZrO2催化剂用于甲烷水蒸气重整制合成气不仅具有较高的活性,也具有较好的稳定性。水蒸气比增加,CH4转化率增大、CO选择性下降。CH4转化率及CO选择性均随空速增大而下降。使用10%Ni/ZrO2催化剂,在650 ℃、空速1.984×104 h-1、原料气配比H2O∶CH4∶N2=2∶1∶2.67的条件下,获得CH4转化率85%、CO选择性70%的结果。  相似文献   

7.
用自燃烧法制备了钙钛矿型La0.8Sr0.2FeO3催化剂。用H2-TPR考察了催化剂表面的氧消耗过程,用程序升温表面反应(TPSR)研究了甲烷与催化剂表面氧物种的反应,用在线质谱脉冲反应和甲烷/氧切换反应研究了催化剂的晶格氧选择氧化甲烷制合成气。结果表明,催化剂上存在两种氧物种,无气相氧存在时,强氧化性氧物种首先将甲烷氧化为CO2和H2O;而后提供的氧化性较弱的晶格氧具有良好的甲烷部分氧化选择性,可将甲烷氧化为合成气CO和H2(选择性可达95%以上)。在900℃一的CH4/O2切换反应结果表明,甲烷能与La0.8Sr0.2FeO3中的晶格氧反应选择性地生成CO和H2,失去晶格氧的La0.8Sr0.2FeO3能与气相氧反应恢复其晶格氧。在合适的反应条件下,用La0.8Sr0.2FeO3催化剂的晶格氧化替分子氧按Redox模式实现甲烷选择氧化制合成气是可能的。  相似文献   

8.
两段法甲烷催化氧化制合成气研究   总被引:6,自引:0,他引:6  
提出了一种将甲烷低温催化燃烧和部分氧化相结合制取合成气的新方法 ,考察了反应条件对Pd Pt催化剂上的甲烷低温燃烧反应性能以及Ni-La2 O3 MgAl2 O4 -Al2 O3催化剂上甲烷催化氧化制合成气反应性能的影响。结果表明 :采用两个串联固定床反应器和分段进氧 ,不仅可以使反应原料偏离爆炸极限 ,确保过程的安全操作 ;而且一段反应器采用低温进料 ,通过少量甲烷催化燃烧 ,为二段反应提供含有少量CO2 、H2 O等氧化产物的反应原料。在二段反应器中 ,放热的甲烷部分氧化反应和吸热的蒸汽重整及CO2 重整反应同时进行 ,可避免催化剂床层飞温 ,使反应基本上在绝热恒温条件下进行 ,可用两个串联的固定床反应器实现甲烷部分氧化制合成气反应。在适合的反应条件下 ,甲烷转化率可达 93% ,H2 和CO选择性分别为 97%和 98%。  相似文献   

9.
甲烷在Ni/TiO_2催化剂表面的活化   总被引:1,自引:0,他引:1  
考察了Ni/TiO2催化剂甲烷部分氧化和二氧化碳重整制合成气的反应活性,实验表明,以TiO2为载体的镍系催化剂对于甲烷部分氧化制合成气反应具有较好的活性,尤其对H2的选择性较高,对二氧化碳重整制合成气反应具有较好的低温反应活性.采用脉冲-质谱在线分析等技术,在无气相氧条件下向Ni/TiO2催化剂脉冲CH4,发现甲烷在催化剂表面的活化(转化)及其氧化产物的选择性与金属催化剂表面氧的浓度密切相关.CH4与Ni/TiO2催化剂作用过程中存在明显的氢溢流和氧溢流现象,可能是这种溢流效应使得N/TiO2催化剂具有良好的反应活性和抗积碳性能.  相似文献   

10.
用浸渍法制备γ-Al2O3负载的Ni-Mn双金属催化剂.在500-700。C按照17:17:2的C02/CHa/N2比例,以36mL/min的载气流速进行甲烷二氧化碳重整反应,利用甲烷二氧化碳的转化率、生成的合成气H2/CO比例以及长期稳定性等指标评价了催化剂的催化性能.实验表明,添加Mn提高催化性能并使双金属催化剂的稳定性更高,比单金属催化剂更好地抑制焦炭生成,Mn最合适的添加量为0.5wt%.通过BET、C02-TPD、TGA、XRD、SEM、EDX和FTIR各种技术对催化剂进行了表征.  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   

14.
15.
[(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   

16.
17.
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   

18.
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   

19.
Me2Sn(O2PPh2)2 ( 1 ), Ph2Pb(O2PMe2)2 ( 2 ), and Ph2Pb(O2PPh2)2 ( 3 ) have been synthesized by the reactions of Me2SnCl2 or Ph3PbCl with the corresponding diorganophosphinic acid in methanol. X‐ray diffraction studies show that the diorganophosphinate groups behave as double bridges between the metal atoms leading to polymeric ring‐chain structures with M2O4P2 (M = Pb, Sn) eight‐membered rings. The organic groups bonded to the metal atoms are in trans‐position in the resulting octahedral arrangement around the metal atoms. The IR and the mass spectra were reported and discussed.  相似文献   

20.
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   

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