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1.
应用XRD,XPS,Mossbauer谱,TPR,CO化学吸附CO-TPD,CO+H2反应性能测试等手段研究了锰助剂对F-T合成制低碳烯烃Mn-Fe/ZrO2催化剂结构及催化性能的影响。结果表明,与Fe/Zr催化相比,加锰助剂后的催化剂F-T反应催化活性上升,甲烷选择性降低,低碳烯烃选择性增加。  相似文献   

2.
用LRS和XRD相结合方法对Zr-K和Zr-Mn-K催化剂进行了。考察共沉淀法制备的Zr-K、Zr-Mn-K催化剂焙烧温度和K2O、MnO2含量对其晶相结合的影响。在Zr-K催化剂中,ZrO2以单斜和四方混合晶型存在,在Zr-Mn-K催化剂中,当MnO2含量在17-30%时,催化剂中仅有高度分散的四方晶型晶型ZrO2它是合成甲醇、异丁醇的活性相。  相似文献   

3.
调变钴系超细粒子催化剂合成重质烃   总被引:2,自引:0,他引:2  
张永青  钟炳 《分子催化》1997,11(3):203-208
制备了SiO2气凝胶超细粉、ZrO-SiO2超细复合氧化物载体以及Co/ZrO2-SiO超细粒子催化剂,考察了还原温度对Co/ZrO2-SiO催化剂F-T反应性能的影响。结果表明,400下,H2还原的Co/ZrO2-SiO2催化剂有最佳F-T反应活性和C5选择性。  相似文献   

4.
用TPD-MS和TPR技术研究了Mn-O/γ-Al2O3和Mn-O/ZrO+γ-Al2O3催化剂中表面氧的脱附、还原性能和再生氧化恢复性能,并用XRD对催化剂的固相结构进行了表征。结果表明,Mn-O/γ-Al2O3或Mn-O/ZrO2+γ-Al2O3催化剂上存在MnO2、Mn2O3和少量Mn3O4物种。ZrO2的存在不影响Mn-O/γ-Al2O3的TPR的TPD的特征峰,但使MnO2的量明显增加,  相似文献   

5.
以ZrO2—Al2O3为载体Co—Mo—K耐硫变换催化剂的TPR研究   总被引:5,自引:0,他引:5  
利用程序升温还原(TPR)技术,研究了ZrO2对Co/Al2O3、Mo/Al2O3、Mo-K/Al2O3以及Co-Mo-K耐硫催化剂氧化还原性能的影响。结果表明,ZrO2的引入,使活性组分在载体表面分散的更好,促进了Mo-K活性相的形成,使o和Mo的还原变得容易,并起到抑制催化剂在反应中被重新氧化的作用。  相似文献   

6.
应用XRD、XPS、Mossbauer谱、TPR、CO-TPD、CO+H2反应性能测量试等手段研究了CeO2对F-T合成制低碳烯烃Ce-Fe/ZrO2催化剂催化性能的影响。结果表明,与Fe/Zr催化剂相比,加铈助剂后的催化剂F-T反应催化活性明显上升。  相似文献   

7.
制备了SiO2气凝胶超细粉、ZrO2-SiO2超细复合氧化物载体以及Co/ZrO2-SiO2超细粒子催化剂.考察了还原温度对Co/ZrO2-SiO2催化剂F-T反应性能的影响.结果表明,400下、H2还原的Co/ZrO2-SiO2催化剂有最佳F-T反应活性和C5+选择性.  相似文献   

8.
以ZrO2-Al2O3为载体的Co-Mo-K耐硫水煤气变换催化剂   总被引:5,自引:0,他引:5  
李玉敏  耿云峰 《应用化学》2000,17(3):276-279
采用沉淀法和浸渍法分别制备了ZrO2-Al2O3复合载体和Co-Mo-K耐硫变换催化剂。研究了ZrO2对Co-Mo-K面硫变换催化剂活性及热稳定性的影响。利用XRD、BET、TG、XPS等手段对催化剂及其载体的结构、吸硫吸水性能和氧化还原性能进行了表征。结果表明以ZrO2-Al2O3代替传统的γ-Al2O3作为Co-Mo-K耐硫变换催化剂的载体,可提高催化剂的活性,尤其是低温活性,并可改善催化剂的  相似文献   

9.
用TPR,Mossbauer谱法,XPS,XRD及反应评价等手段研究了Fe2O3/ZrO2催化剂的还原行为、铁物种状态和CO加氢反应性能.结果表明,预处理条件明显影响Fe2O3/ZrO2催化剂表面铁原子的数量、铁锆间的相互作用、催化剂的物相变化以及CO加氢反应的催化性能.以Fe2O3/ZrO2经氢氟混合气程序升温至753K还原生成的Fe-Zr-O物种为前身,在合成气中进一步还原得到的铁锆催化剂,具有较好的F-T反应合成低碳烯烃的选择性.  相似文献   

10.
ZrO2载体上Pd,Ag,Co催化剂用于甲烷完全氧化反应的研究   总被引:5,自引:2,他引:3  
用浸渍法制备了Pd/ZrO2、Ag/ZrO2和Co/ZrO2等催化剂用一完全氧化反应。实验表明,对Pd/ZrO2催化剂,焙烧温度对共催化生影响很大,最佳焙烧温度为280℃。对Pd/ZrO2催化剂,最佳Pd负一为10W%。随总流量增大,甲烷论率下随O2/CH4进料比减小,甲烷转化率下降。其它负载型金属催化剂如Ag,Co等用于甲烷氧化反应中具有一定的活性,但活性低于Pd。Pd-Co双金属催化剂可望是理  相似文献   

11.
锆改性钴基费-托合成催化剂催化性能的研究   总被引:6,自引:0,他引:6  
 考察了助剂锆和金属钴负载量对锆改性Co/Al2O3催化剂催化性能的影响.结果表明,锆助剂能够高度分散在氧化铝载体上,而活性组分钴以一定尺寸存在;锆的添加能够明显地提高Co/Al2O3催化剂的催化活性和C5+烃选择性,但助剂锆含量对催化剂催化性能的影响不大;在锆存在下,催化剂的催化活性随金属钴含量先升高后降低.进一步的研究表明,催化剂上烃形成速率的提高可能是由于锆助剂能够增加催化剂的活性位数目,增强桥式CO吸附的强度,在Co-ZrO2间形成界面.  相似文献   

12.
 以HMS,MCM-41,AlHMS和ZrO2/HMS等中孔分子筛为载体,采用孔体积浸渍法制备了系列负载型钴催化剂.XRD测定结果表明,Co氧化物完全分散于分子筛内表面,载体仍保持中孔分子筛的特征;低温N2吸附测定结果表明,表面负载金属钴后,分子筛的比表面积和孔体积下降,孔径减小,孔壁增厚.比较了不同中孔分子筛负载Co催化剂在F-T反应中的催化性能,以短程六角对称的HMS为载体,有利于F-T反应中的链增长,烃类产物主要为微晶蜡;以ZrO2/HMS为载体可抑制CH4的生成,提高C5+的选择性.  相似文献   

13.
Catalytic Combustion of Methane over MnOx/ZrO2-Al2O3 Catalysts   总被引:4,自引:0,他引:4  
MnOx/Al2O3 and MnOx/ZrO2-Al2O3 catalysts were prepared by incipient wetness impregnation of Mn(CH3COO)2 on the corresponding supports, followed by the characterization using X-ray diffraction (XRD). temperature programmed reduction (TPR) and BET surface area techniques. The result shows the BET surface area of ZrO2-Al2O3 is lower than that of Al2O3 due to the loading of ZrO2.However tile resulted MnOx/ZrO2-Al2O3 catalyst exhibits higher activity for methane combustion than MnOx/Al2O3, because the addition of ZrO2 onto Al2O3 is beneficial for the dispersion of Mn species and the improvement of the lattice oxygen activity in MnOx. subsequently the activation of methane during combustion. The optimum loading of Zr in MnOx/ZrO2-Al2O3 is in the range of 5%-10% correlated with the calcination temperatures of catalyst supports.  相似文献   

14.
利用程序升温还原 (TPR)技术 ,研究了ZrO2 对Co/Al2 O3、Mo/Al2 O3、Mo -K/Al2 O3以及Co -Mo -K耐硫变换催化剂氧化还原性能的影响。结果表明 ,ZrO2 的引入 ,使活性组分在载体表面分散的更好 ,促进了Mo -K活性相的形成 ,使Co和Mo的还原变得容易 ,并起到抑制催化剂在反应中被重新氧化的作用。  相似文献   

15.
采用程序升温脱附及FT-IR技术考察了CO、H2在钴基催化剂上的吸附行为.H2-TPD表明,Co/SiO2催化剂有两类脱附氢,引入锆助剂后,低温脱附氢量明显增加,高温吸附氢量下降.CO-TPD及吸附态CO的红外光谱表明锆助剂使CO在钴催化剂上的吸附强度减弱,但其吸附量增大.钴基催化剂的费-托合成反应性能可以用吸附态物种的变化来解释.  相似文献   

16.
以ZrOCl2·6H2O和AlCl3为原料,采用共沉淀方法制得一系列不同ZrO2质量分数的ZrO2-Al2O3混合氧化物载体;并以该混合氧化物为载体,采用初湿浸渍法制得钴质量分数为12%的Co/ZrO2-Al2O3催化剂。XRD、NH3-TPD、TPR和原位IR等表征结果表明,随着混合载体中ZrO2质量分数的增加,载体比表面积先增加后减少,混合载体的平均孔径则小于单一氧化物ZrO2和Al2O3的平均孔径。ZrO2和Al2O3载体混合后会导致氧化物的比表面积和酸性增大并且有新的物相生成。当混合氧化物用作载体时,能够抑制载体表面金属钴的分散,改变催化剂的还原行为,降低催化剂对CO物种的吸附能力。CO加氢反应表明,与单一金属氧化物相比,钴负载ZrO2-Al2O3混合氧化物催化剂的加氢活性和重质烃选择性有所降低。  相似文献   

17.
钴基费-托合成催化剂上CO、H2的吸附行为   总被引:2,自引:0,他引:2  
采用程序升温脱附及FT IR技术考察了CO、H2在钴基催化剂上的吸附行为.H2 TPD表明,Co/SiO2催化剂有两类脱附氢,引入锆助剂后,低温脱附氢量明显增加,高温吸附氢量下降.CO TPD及吸附态CO的红外光谱表明锆助剂使CO在钴催化剂上的吸附强度减弱,但其吸附量增大.钴基催化剂的费 托合成反应性能可以用吸附态物种的变化来解释.  相似文献   

18.
This work described the application of Co–Mn–Fe hydrotalcites (Co–Mn–Fe LDHs) as heterogeneous catalysts for Fenton reaction process. The Co–Mn–Fe LDHs were synthesized by the co-precipitation method and were characterized by X-ray diffractometry (XRD), infrared spectroscopy (IR), zeta potential, and BET surface area measurement. The catalytic activity of different kinds of hydrotalcites was evaluated by the degradation of Direct Scarlet 4BS (4BS). The Co–Mn–Fe LDHs showed the best catalytic performance among four catalysts. The presence of the Mn2+/Mn3+ at surface of catalyst could accelerate the reduction of Co3+–Co2+, and then increased in the catalytic activity of the Co–Mn–Fe LDHs. The effect of initial pH, catalyst dosage, dye concentration, and reaction temperature on the degradation of 4BS had been investigated. Radical reaction mechanism was proposed by the addition of radical scavenger. The degradation kinetic followed pseudo-first-order model. The activation energy of Co–Mn–Fe LDHs was determined to be 37.3 kJ/mol. The catalytic activity of Co–Mn–Fe LDHs was maintained after four cycles of reaction, which proved the reusability of catalyst. Finally, the possible reaction mechanisms involved in the heterogeneous Fenton system were proposed.  相似文献   

19.
A series of nanosized Co/Zn/Mn/K composite catalysts for Fischer-Tropsch synthesis (FTS) were prepared by supercritical fluid drying (SCFD) method and common drying (CD) method. The nanosized cobalt-based catalysts were characterized by XRD, TEM and BET techniques. Their catalytic performances were tested in a slurry-bed reactor under FTS reaction conditions. The drying and crystallization were carried out simultaneously during SCFD, therefore, the catalysts prepared by SCFD method have ideal structure and show the FTS performance superior to the others prepared by CD method. The FTS activity and selectivity were improved via adding Zn, Mn and K promoters, and less CH4 and CO2 as well as higher yield of C5+ products were achieved. The optimal performance of a 92% CO conversion and a 65% C5+ product yield was obtained over a catalyst with the component of Co/Zn/Mn/K = 100/50/10/7. Furthermore, the catalytic performance was studied under the conditions of liquid-phase and supercritical phase slurry-bed, and C5+ product yield were 57.4% and 65.4%, respectively. In summary, better catalytic performance was obtained using the nanosized catalyst prepared by SCFD method under supercritical reaction conditions, resulting in higher conversion of CO, less CO2 byproduct, and higher yield of C5+ products.  相似文献   

20.
The molecular structures, oxidation states, and reactivity of 3 and 6% CrO3/ZrO2 catalysts prepared by incipient wetness impregnation were examined under different conditions. The in situ Raman spectroscopic studies under dehydrated conditions reveal that the 3 and 6% CrO3/ZrO2 catalysts possess equal amounts of monochromate and polychromate species. Consequently, monolayer coverage on this ZrO2 support is about 3% CrO3. The 6% CrO3/ZrO2 possesses an additional Raman band due to Cr2O3 crystals corresponding to the remaining 3% CrO3. Furthermore, during reaction conditions the polychromate species is preferentially reduced, the monochromate species are slightly affected, and the Cr2O3 crystals are not affected. The in situ UV-vis-NIR diffuse reflectance spectroscopy results reveal that under steady-state reaction conditions the extent of reduction and edge energy position of surface Cr6+ cations increase with an increase in reduction environment for the 3 and 6% CrO3/ZrO2 samples. Propane oxidative dehydrogenation (ODH) studies reveal that the catalytic activity expressed in moles of propane converted per gram catalyst per second is similar for the two catalysts, which is consistent with equal amounts of molecularly dispersed chromia present. The turnover frequency for the 6% CrO3/ZrO2 catalyst is, however, smaller than that for the 3% CrO3/ZrO2 sample due to the presence of Cr2O3 crystals, which are relatively inactive for propane ODH. For this catalytic system and for the experimental conditions used, propene, CO, and CO2 are primary products. Furthermore, the 33-39% propene selectivity is not affected by the C3H8/O2 ratio for both catalysts. Structure-reactivity studies suggest that the molecularly dispersed species are present in equal amounts in the 3 and 6% CrO3/ZrO2 samples as Cr6+ monochromate and polychromate species are the most effective catalytic active sites taking part in the propane ODH reaction.  相似文献   

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