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1.
K2O-Fe2O3系催化剂的穆斯堡尔谱研究   总被引:1,自引:0,他引:1  
利用穆斯堡尔谱在K2 O Fe2 O3催化剂中检出了α Fe2 O3(大晶粒及微晶 )、KFeO2 、K1 XFe11O17、α FeOOH和γ FeOOH等物相 ,它们的相对含量取决于催化剂的含钾量及煅烧温度 ,相对含量的改变导致样品的穆斯堡尔谱图出现了复杂的变化 .与XRD相比 ,穆斯堡尔谱可对钾与氧化铁的相互作用进行更有效的表征 ,穆斯堡尔谱和TPR研究都表明钾可延缓催化剂中Fe(III)的被还原 .  相似文献   

2.
沉淀铁催化剂在F-T合成反应过程中的物相变化   总被引:3,自引:0,他引:3  
 采用元素分析、X射线衍射和穆斯堡尔谱等手段研究了喷雾干燥沉淀Fe-Cu-K/SiO2催化剂在F-T合成反应过程中的物相变化. 结果表明,新鲜催化剂样品主要由α-Fe2O3组成,且81.1%的α-Fe2O3粒径小于13.5 nm. 随着反应时间的延长,催化剂表面碳沉积物的含量逐渐增多,不饱和度逐渐增大; χ-Fe5C2的含量逐渐增多,Fe3O4的含量逐渐减少并趋于稳定. 超顺磁Fe3+的含量呈先增加后减少的变化趋势. 由于碳沉积物是由CO生成的,而χ-Fe5C2是由α-Fe2O3经Fe3O4生成的,故催化剂表面碳沉积物的生成先于χ-Fe5C2的生成.  相似文献   

3.
定明月  杨勇  相宏伟  李永旺 《催化学报》2010,31(9):1145-1150
 采用连续共沉淀和喷雾干燥相结合的方法制备了微球形 Fe 基催化剂, 采用 N2 吸附-脱附、X 射线衍射和穆斯堡尔谱等手段, 考察了催化剂在不同还原条件下铁物相的转变, 并在浆态床反应器中评价了催化剂的费-托合成 (FTS) 反应性能. 结果表明, Fe 基催化剂在合成气气氛下首先从α-Fe2O3 转变为 Fe3O4, 然后转变为铁碳化物 (FexC); 还原压力的增大有利于 α-Fe2O3 向 Fe3O4 的转变, 而抑制 Fe3O4 向 FexC 的转变; 还原空速的增加则促进 Fe3O4 转变为 FexC. 催化剂的 FTS 反应活性随着催化剂中 Fe3O4 含量的增加而逐渐下降, 而随着 FexC 含量的增加而逐渐上升.  相似文献   

4.
使用穆斯堡尔谱,ESR和XRD等技术表征了未添加助剂和添加LiCl的Fe2O3/SiO2催化剂.XRD结果指出,添加LiCl的Fe2O/SiO2催化剂出现铁酸盐和α-方石英的衍射峰,这种结果的出现与该催化剂有较高的C2烃选择性密切相关。穆斯堡尔谱结果表明:添加LiCl的Fe2O3/SiO2催化剂有更高的结构对称性.这种结构对分子氧的活化起着重要的作用.氯的存在大大降低了氧的离解吸附的速率,减少了原子氧的吸附位的数目,并可除去吸附的原子氧,该氧种对COx的生成有利.  相似文献   

5.
用~(57)Fe穆斯堡尔谱研究了炭载型复合催化剂中铁化学形态随温度的变化,及各活性组分、助剂对铁化学形态的影响;并通过ESR谱考察了复合催化剂中不同活性组分对铁在载体炭表面电子特性的影响。研究结果表明,复合催化剂中各活性组分、助剂和载体炭与铁之间存在着强相互作用。在350~650℃,载体炭可将铁从Fe_2O_3还原到Fe_3O_4、FeO、α-Fe和生成炭化铁。活性组分Cu和助剂K可改变催化剂中铁周围的电子密度,促进铁在载体炭上从高价态向低价态还原。同时还发现催化剂中Na和Cr对铁有很强的助分散作用。  相似文献   

6.
用穆斯堡尔谱考察了氧化铁脱硫剂在高温煤气中还原及硫化时的铁形态变化规律。在反应开始阶段,原脱硫剂中的α-Fe2O3即被迅速还原成Fe3O,Fe3O4可进一步还原转化成α-Fe。反应初期Fe3O4和α-Fe都参与脱硫反应,其中α-Fe具有较高的脱硫活性,对整个脱硫过程而言α-Fe是主要的脱硫活性相。铁化合物与硅铝氧化物载体间存在相互作用,形成磁微 晶颗粒及少量γ-Fe。在高温煤气条件下,FeS是唯一的铁硫化物,θ-Fe3C则是α-Fe转化中的主要产物。适量的θ-F e3C对脱硫有促进作用。  相似文献   

7.
用混合法制备了Fe2O3-K2O乙苯脱氢催化剂,并用压汞法、X射线衍射、穆斯堡尔谱、程序升温还原和热重-差热分析等表征手段,考察了焙烧温度对催化剂的催化活性、比表面积、体相结构和还原性能的影响.结果表明,随着焙烧温度的升高,催化剂的比表面积逐渐减小,平均孔径逐渐增大;尖晶石K2Fe22O34中正四面体Fe3 的含量逐渐减少,正八面体Fe3 的含量逐渐增多,催化剂逐渐变得容易被还原;催化剂的催化活性差别不大,但达到平稳时所需的诱导期逐渐缩短.过高的焙烧温度不利于催化剂的稳定性.  相似文献   

8.
 采用化学还原法在纯水中制备了纳米铁基催化剂, 将其直接分散到液态聚乙二醇 (PEG) 中进行费托合成 (FTS) 反应. 透射电子显微镜、X 射线衍射、穆斯堡尔谱和 X 射线光电子能谱等结果表明, 还原态催化剂粒径在 30~65 nm, 主要由无定形的 Fe-B 和α-Fe 组成, 其中 B 部分电子向 Fe 转移. 反应过程中, 无定形的 Fe-B 首先快速转变为 α-Fe, 而 α-Fe 很容易发生碳化或氧化, 最终转变为 Fe3O4 和碳化铁. PEG 能有效抑制纳米粒子的聚集长大, 反应后催化剂粒径减小为 20~55 nm. 在 3.0 MPa, V( H2)/V(CO) = 2 和 200 oC 的反应条件下, 该催化剂表现出优异的 FTS 低温活性和较高的稳定性, 反应后产物和催化体系很容易实现分离.  相似文献   

9.
本文指出,氯离子是碱金属助催的合成氨催化剂Fe-AC(活性炭)-K(金属钾)体系的毒物。通过对含氯催化刑的活性测试,配合气相色谱、穆斯堡尔谱以及X-射线衍射图的研究,所得实验結果指出,KCl使催化剂中毒的机制是氯离子引起了高分散的小颗粒α-Fe的聚结,本文还讨论了氯离子对Fe体系和Ru体系催化剂的不同影响,归之于Fe系合成氨催化剂的结构敏感性。  相似文献   

10.
以原位穆斯堡尔谱研究了活性炭担载的费-托合成铁-钼双金属催化剂的还原和碳化行为。在H_2中不同温度下还原催化剂,其中的Fe~(3+)还原为Fe~(2+),进而还原为Fe~0。但在400—450℃间发生了还原铁物类的再氧化现象,可归因于磷钼酸根Keggin结构的热分解。在500℃H_2中,铁和钼都还原为金属并形成合金,其穆斯堡尔谱为一单峰,同质异能移为-0.16mm/s。再在300℃合成气(2H_2/CO)中碳化,可生成Fe-Mo碳化物(Fe_(1-y)Mo_y)_xC,穆斯堡尔谱为δ~0.17mm/s,△~0.64mm/s的双峰。  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   

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15.
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   

16.
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   

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.
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   

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.
The structures of isomorphous monoclinic strontium and lead bis­(di­hydrogenphosphate), Sr(H2PO2)2 and Pb(H2PO2)2, and orthorhombic barium bis­(di­hydrogen­phos­phate), Ba(H2PO2)2, consist of layers of hypophosphite anions and metal cations exhibiting square antiprismatic coordination by O atoms. The Sr and Pb atoms are located on sites with point symmetry 2, and the Ba atoms are on sites with point symmetry 222. Within the layers, each anion bridges four metal cations.  相似文献   

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