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1.
钴纳米粒子催化水相费托合成   总被引:1,自引:0,他引:1  
王航  寇元 《催化学报》2013,34(10):1914-1925
水相费托合成可以在远低于传统温度下实现,其低温高效的特点使其具有重要的应用潜力. 本文制备了水相稳定且可循环利用的Co纳米粒子并应用于水相费托反应,150℃下活性为7.4×10-7molCO gCo-1 s-1,C5+选择性接近40%,是目前纯钴水相费托合成的最好结果,而其它方法合成的催化剂在150℃时活性低下. 对催化剂进行了粒径、结构、成分测定和原位红外光谱检测,研究了催化剂在反应中的重构过程和B掺杂效应.  相似文献   

2.
 研究了 Mo 和 Cu 助剂对 FeK/SiO2 催化剂的性质及费托 (F-T) 合成性能的影响. 采用 N2 物理吸附、H2 程序升温还原、X 射线衍射、穆斯堡尔谱和 X 射线光电子能谱技术对催化剂进行了表征. 结果表明, Mo 加入后与 Fe 产生了较强的相互作用, 抑制了催化剂的还原和碳化; Cu 助剂的加入促进了催化剂的还原和碳化; 当 Mo 和 Cu 共同加入后, 催化剂的还原和碳化行为与单独加入 Cu 助剂时相似. 催化剂 F-T 合成性能在固定床上于 280 oC, 1.5 MPa, 2 000 h-1, H2/CO = 2.0 的合成气中测试. 结果表明, Mo 的加入降低了催化剂活性, 但提高了重质烃 (C5+) 的选择性; Cu 的添加提高了催化剂的活性, 但对稳定 C5+选择性作用不明显. Mo 和 Cu 共同加入后, 催化剂既表现出较为稳定的 C5+选择性, 同时其活性也没有降低.  相似文献   

3.
采用浸渍法制备了一系列Ag/ZrO2催化剂, 考察了Ag/ZrO2催化剂对1,2-丙二醇选择性氧化合成丙酮醛反应的催化性能. 实验结果表明: 在原料气配比为V(N2)∶V(O2)=300∶19, n(O2)/n(alcohol)=1.2, 反应物液时空速为3.2 g/(g•h), 反应温度为673 K时, 1,2-丙二醇选择性氧化合成丙酮醛反应的转化率为95.7%, 选择性为55.3%, 高于传统电解银催化剂. UV-Vis DRS和XPS的研究结果表明: 在Ag/ZrO2催化剂上存在大量的Ag和Agnδ+有利于促进催化活性的提高.  相似文献   

4.
采用浸渍法制备了一系列Ag/ZrO2催化剂, 考察了Ag/ZrO2催化剂对1,2-丙二醇选择性氧化合成丙酮醛反应的催化性能. 实验结果表明: 在原料气配比为V(N2)∶V(O2)=300∶19, n(O2)/n(alcohol)=1.2, 反应物液时空速为3.2 g/(g•h), 反应温度为673 K时, 1,2-丙二醇选择性氧化合成丙酮醛反应的转化率为95.7%, 选择性为55.3%, 高于传统电解银催化剂. UV-Vis DRS和XPS的研究结果表明: 在Ag/ZrO2催化剂上存在大量的Ag和Agnδ有利于促进催化活性的提高.  相似文献   

5.
研究钠促进的CuCoMn催化剂的特性及其在生物质气化合成气合成高醇中的应用. 研究了催化剂中Na含量及合成条件(温度、压力和空速)对生物质基合成气合成高醇性能的影响. 发现CuCoMnNa0.1催化剂较适合高醇合成, 在300 °C以下, 随着温度的上升, 碳转化率增大, 而醇选择性降低. 压力的增加有利于醇的合成, 增大空速会明显降低碳转化率, 但醇时空产率则因转换频率的增加而增大. 在所考察的范围内, 醇产率最高达到304.6 g·kg-1·h-1, 其中C2+高醇(C2-C6醇)占64.4% (w, 质量分数). 醇产物和烃产物均符合ASF (Anderson- Schulz-Flory)分布关系. 根据催化剂性能与表征分析, Na的加入有利于提高生物质气化合成气合成高醇的选择性和活性元素Cu、Co的分散性. X射线光电子谱(XPS)测试结果显示反应后的催化剂表面上, Cu以Cu+和Cu0的混合形式存在, 而Co则是Co2+/Co3+和Co0的混合物. 增加Na的含量, Cu0/Cu+比率和Co0的强度均随之减小.  相似文献   

6.
合成气制液化石油气复合催化剂的性能   总被引:2,自引:0,他引:2  
 将甲醇合成催化剂与负载 Pd 的分子筛颗粒混合制得复合催化剂, 在连续固定床反应器上考察了该催化剂对合成气一步法制液化石油气 (LPG) 的性能. 采用 N2 吸附-脱附、NH3 程序升温脱附和程序升温氧化对催化剂进行了表征. 结果表明, 分子筛孔径对 LPG 选择性影响显著, 当采用孔径为 0.74 nm × 0.74 nm 的 Y 型分子筛时 LPG 选择性最高. 在 300 oC, 2.1 MPa 和空速 1 500 h-1 条件下, 含有 Y 型分子筛的复合催化剂上 CO 转化率达 80.2%, LPG 占烃类产物的 73.8%. 在一步法合成 LPG 反应中, 催化剂表面积炭是导致 CO 转化率和 LPG 选择性下降的主要原因.  相似文献   

7.
共沉淀法制备了Ru-Zn催化剂,考察了反应修饰剂ZnSO4和预处理对苯选择加氢制环己烯Ru-Zn催化剂性能的影响。结果表明,反应修饰剂ZnSO4可以与Ru-Zn催化剂中助剂ZnO反应生成(Zn(OH)23(ZnSO4)(H2O)盐。随反应修饰剂ZnSO4浓度增加,(Zn(OH)23(ZnSO4)(H2O)盐量的逐渐增加,Ru-Zn催化剂活性逐渐降低,环己烯选择性逐渐升高。因为(Zn(OH)23(ZnSO4)(H2O)盐中的Zn2+可以使Ru变为有利环己烯生成的缺电子的Ruδ+物种,而且还可以占据不适宜环己烯生成的强Ru活性位。但当反应修饰剂ZnSO4浓度高于0.41 mol·L-1后,继续增加ZnSO4浓度,由于Zn2+水解浆液酸性太强,可以溶解部分(Zn(OH)23(ZnSO4)(H2O)盐,Ru-Zn催化剂活性升高,环己烯选择性降低。但环己烯选择性却略微降低,这是由于ZnSO4溶液中大量的Zn2+可以与生成的环己烯形成配合物,稳定生成的环己烯,抑制生成的环己烯再吸附到催化剂表面并加氢生成环己烷。在ZnSO4最佳浓度0.61 mol·L-1下对Ru-Zn催化剂预处理15 h,Ru-Zn催化剂中助剂ZnO可以与ZnSO4完全反应生成(Zn(OH)23(ZnSO4)(H2O)盐,在该催化剂上25 min苯转化68.2%时环己烯选择性和收率分别为80.2%和54.7%。而且该催化剂具有良好的稳定性和重复使用性能。  相似文献   

8.
本文采用等体积浸渍制备了掺杂不同金属助剂改性的Ni基催化剂,考察了其催化浆态床CO甲烷化的性能。通过XRD、H2-TPR、HR-TEM等表征对催化剂进行了分析,结果表明,掺杂Zr、Co、Ce、Zn、La助剂促进了Ni物种在载体表面的分散,减小了Ni的晶粒尺寸,降低了催化剂的还原温度;掺杂Mg助剂则导致催化剂的还原温度升高。浆态床活性评价结果表明,掺杂Zr、Co、Ce、Zn、La助剂提高了催化剂的甲烷化性能,其中以La助剂的效果最明显,通过对La负载量进一步优化后发现,当La负载量为8%时,催化剂的甲烷化催化性能最优,CO转化率、CH4选择性和时空收率分别达到96.3%、87.1%和179.6g·kg-1·h-1;掺杂Mg助剂则降低了催化剂的甲烷化活性。  相似文献   

9.
分别以硼氨配合物和硼氢化钠为还原剂合成了核壳结构的Cu@CoW三元合金催化剂和非核壳结构的CuCoW三元合金催化剂,25℃下,Cu0.4@Co0.5W0.1三元合金催化剂对于硼氨配合物水解反应的TOF(转换频率)值达到0.3690molH2·molcat-1·s-1,明显高于非核壳结构的Cu0.4Co0.5W0.1催化剂,接近Pt、Pd等贵金属的催化活性,反应的活化能为49kJ·mol-1。与非核壳结构的CuCoW合金相比,核壳结构的Cu@CoW三元合金催化剂的催化性能及稳定性均有明显提高。  相似文献   

10.
负载型钴基催化剂是天然气基费托合成的一种重要催化剂,其金属分散度和活性位密度是决定费托合成反应活性和产物选择性(CH4%, C5+%)的关键因素。因此,提高金属钴的分散度和催化剂的还原度是提高金属钴的原子利用率、降低催化剂成本的一条有效途径。本文综述了近年来高分散型钴基催化剂的研究进展,重点探讨了催化剂制备方法、载体类型及贵金属助剂对催化剂分散度和还原性的影响,以及影响高分散型钴基催化剂的费托合成反应活性、产物选择性和反应稳定性的因素,并对负载型钴基催化剂今后的研究发展提出了一些建议。  相似文献   

11.
Co-based catalysts are often utilized due to their high Fischer-Tropsch synthesis (FT) activity, G5+ hydrocarbon selectivity, low water-gas shift reaction (WGS) activity and relatively low cost. Selective control of C5+ hydrocarbons and the catalyst longevity are critical in the design of cobalt catalysts. Thus, various methods to improve the performance of Co catalysts have been suggested. The progress in cobalt catalysts reviewed in the last few decades, mainly involved the support, promoter, preparation and deactivation of Co-based catalysts.  相似文献   

12.
Co-based catalysts are often utilized due to their high Fischer-Tropsch synthesis (FT) activity,C+5 hydrocarbon selectivity, low water-gas shift reaction (WGS) activity and relatively low cost. Selective control of C5+ hydrocarbons and the catalyst longevity are critical in the design of cobalt catalysts.Thus, various methods to improve the performance of Co catalysts have been suggested. The progress in cobalt catalysts reviewed in the last few decades, mainly involved the support, promoter, preparation and deactivation of Co-based catalysts.  相似文献   

13.
胡兴邦  李浩然 《化学进展》2009,21(4):577-587
通过理论方法研究碳氢化合物的活化及氧化,可以对不同催化剂及氧化剂的反应机理形成深刻认识,从而指导设计合成更加高效的碳氢化合物活化及氧化催化剂。本文总结了近几年在碳氢化合物的活化及氧化领域的一些新进展,涉及的底物包括从甲烷到碳原子数等于6的烃类,而催化剂及氧化剂包括有机金属化合物和无机化合物(如分子筛催化剂、金属团簇和金属氧化物等)。文章底物的碳原子数为依据进行分类编排,对每一类底物的活化及氧化介绍不同催化剂及氧化剂的反应过程,着重比较了各类催化剂及氧化剂的异同。  相似文献   

14.
Catalytic properties of a variety of Co-MgO and Co-ZnO unsupported catalysts were investigated in Fischer-Tropsch synthesis in a tetradecane-filled slurry reactor at atmospheric pressure and a CO/H2 ratio 1∶2. An effect of size of dispersed metallic cobalt on the selectivity of catalyst in the FT synthesis (the α value of the Anderson-Schulz-Flory distribution) has been found: the smaller the particle, the higher the α value. A possibility to control the α value in the range of 0.6–0.8 for both saturated and unsaturated hydrocarbons has been shown. An explanation of the above data can be based on an assumption that hydrogen atoms dissolved in octahedral interstitial positions of the metallic cobalt particle lattice are responsible for hydrogenation of the FT hydrocarbon intermediates into the hydrocarbons.  相似文献   

15.
选取化学惰性的β-SiC为载体, 通过共浸渍法制备了Co-Pt/SiC催化剂; 利用球差校正的电子显微镜(AC-STEM), 结合氢气程序升温还原(H2-TPR)、 CO化学吸附以及准原位X射线吸收光谱(XAS)等手段, 研究了Co-Pt/SiC催化剂中贵金属Pt对于钴基费托反应的促进作用. 结果表明, Pt助剂从提高分散度和还原度两个方面增加了Co0活性相的数量, 从而提升了催化剂的费托反应活性. 通过AC-STEM表征了Pt在催化剂上的微观结构状态, 发现Pt助剂主要以单原子或团簇的形式分散在金属Co上. 这种分散形式的Pt对钴基催化剂的促进作用可能遵循氢气解离和氢溢流机理: 分布在Co上的Pt显著提高了催化剂解离氢气的能力, 这有利于促进钴物种的还原, 提高还原度, 同时也有利于促进费托反应过程中H2的活化以及CO的氢助解离, 提高了催化剂的反应活性, 以及饱和烷烃的选择性.  相似文献   

16.
Summary An integrated process for producing liquid fuels from synthesis gas via a two-stage Fischer-Tropsch (FT) reaction is disclosed. An iron catalyst was used in the first bed of a fixed-bed reactor followed by a ruthenium promoted cobalt catalyst in the second bed. The activity and selectivity of the dual-bed system were assessed and compared with those using catalysts in a single bed system, separately. The methane selectivity in the dual-bed reactor was about 11% less compared to that of the single-bed system. The C5+ selectivity for the dual-bed reactor was 19.7% higher than that of the single-bed system.  相似文献   

17.
考察了ZrO2、Ru或Pt助剂对Co/Al2O3催化剂结构及浆态床费托合成反应性能的影响。实验结果表明,添加ZrO2助剂可阻止或降低难还原铝酸钴的形成、促进催化剂的还原、提高Co/Al2O3催化剂对费托合成反应的催化活性、降低甲烷选择性并提高C5+烃选择性。H2-TPR表征结果表明,少量Ru或Pt助剂均能降低Co-ZrO2/Al2O3催化剂中钴物种还原温度(Co3O4→CoO和CoO→Co0),提高催化剂的还原度,催化剂呈现出良好的CO加氢反应活性。此外,催化剂组分间浸渍次序对费托合成反应性能有重要影响,载体γ-Al2O3先浸渍Zr组分,可有效抑制难还原化合物形成;Co、Ru组分共浸渍加强了Co和Ru组分密切接触程度,更利于钴物种的还原;Co、Pt组分依次浸渍更利于活性组分的均匀分布,催化剂具有最佳的费托合成反应性能。  相似文献   

18.
The effect of preparation procedure on the anionic composition and structure of hydroxo compounds as precursors of Co-Al catalysts and on their catalytic properties in the Fischer-Tropsch synthesis was studied. The dynamics of changes in the composition and structure of the hydroxide precursors of Co-Al catalysts during thermal treatment and subsequent activation was studied by thermal analysis, IR spectroscopy, XRD analysis, and in situ XRD analysis with the use of synchrotron radiation. It was found that the precursor compounds prepared by deposition-precipitation of cobalt cations on γ- and δ-Al2O3 under urea hydrolysis conditions, which had a hydrotalcite-type structure and contained nitrate, carbonate, and hydroxyl groups, turtned into the oxide compounds Co3 ? x Al x O4 (0 < x < 2) with the spinel structure in the course of thermal treatment in an inert atmosphere. The hydrogen activation of an oxide precursor led to the formation of cobalt metal particles through the intermediate formation of a cobalt(II)-aluminum oxide phase. The catalyst was characterized by high activity and selectivity for C5+ hydrocarbons in the Fischer-Tropsch synthesis.  相似文献   

19.
The performances of a non-noble metal (catalyst A), a non-noble metal catalyst containing a smaller amount of a noble metal (catalyst B) and noble metal (catalyst C) for NOx reduction at 400 - 600°C and space velocity of 16×10-1h-1 have been studied by means of a fixed-bed continuous flow system. In both the absence and presence of oxygen, the following activity orders of catalysts for the reduction of NOx to N2 by CO and C3H6(HC) can be given: C > B > A and B > A C, respectively. Meanwhile, there was CO formation in the reduction reactions of NOx by HC on the three catalysts. The amount of CO produced on catalyst C was the largest of the three catalysts.  相似文献   

20.
Co/SiO2 and zirconium promoted Co/Zr/SiO2 catalysts were prepared using dielectric-barrier discharge (DBD) plasma instead of the conventional thermal calcination method. Fischer-Tropsch Synthesis (FTS) performances of the catalyst were evaluated in a fixed bed reactor. The results indicated that the catalyst treated by DBD plasma shows the higher FTS activity and yield of heavy hydrocarbons as compared with that treated by the conventional thermal calcination method. Increase in CO conversion was unnoticeable on the Co/SiO2 catalyst, but significant on the Co/Zr/SiO2 catalyst, both prepared by DBD plasma. On the other hand, heavy hydrocarbon selectivity and chain growth probability (α value) were enhanced on all the catalysts prepared by the DBD plasma. In order to study the effect of the DBD plasma treatment on the FTS performance, the catalysts were characterized by N2-physisorption, H2-temperature programed reduction (H2-TPR), H2-temperature-programmed desorption (H2-TPD) and oxygen titration, transmission electron microscope (TEM) and X-ray diffraction (XRD). It was proved that, compared with the traditional calcination method, DBD plasma not only could shorten the precursor decomposition time, but also could achieve better cobalt dispersion, smaller Co3O4 cluster size and more uniform cobalt distribution. However, cobalt reducibility was hindered to some extent in the Co/SiO2 catalyst prepared by DBD plasma, while the zirconium additive prevented significantly the decrease in cobalt reducibility and increased cobalt dispersion as well as the FTS performance.  相似文献   

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