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1.
我们采用浸渍法制备了γ-Al2O3负载的Cu-Fe基催化剂,并结合其反应性能和XRD、H2-TPR和XPS等表征结果研究了其催化合成气直接制低碳烯烃的反应行为.结果表明,合成气直接制低碳烯烃Cu-Fe基催化剂的活性组分Cu和Fe之间存在明显的协同效应,Cu-Fe基催化剂表现出优异的合成气直接制低碳烯烃反应性能;Cu基催化剂中引入少量Fe组分明显提高了活性组分Cu的分散度,促进了Cu活性组分的还原,进而有利于催化剂反应性能的改进.初步推断Cu-Fe基催化剂上合成气转化生成低碳烯烃的主要反应历程为CO加氢生成含氧化合物(醇醚等)后再脱水生成低碳烯烃.  相似文献   

2.
吕恩静 《分子催化》2012,26(4):333-339
制备了一系列Ni-Mo/γ-Al2O3催化剂,并采用X射线衍射、乙酸程序升温表面反应、NO-红外漫反射光谱、乙酸(或乙醇)-红外漫反射光谱等表征手段系统研究了助剂Mo的加入对Ni基催化剂的物化性质、乙酸加氢脱氧(HDO)产物、HDO活性位及乙酸(或乙醇)吸附形态的影响.结果表明,Mo的加入可提高活性组分NiO的分散度,且能抑制乙酸C-C键的断裂;Mo的加入可提供氧空穴,以促进乙酸C-O键及中间产物乙醇C-O键的断裂,显著提高了Ni基催化剂的HDO活性和产物C2H6的选择性.表明Mo的加入改变了Ni催化剂HDO的催化作用机理.  相似文献   

3.
负载型Ni Fe/γ-Al_2O_3双金属催化剂的物理化学性质明显受还原温度的影响,进而影响月桂酸甲酯的加氢活性和产物选择性。金属Ni活性中心主要促进脱羰/脱羧(DOC)反应,Fe的加入能促进月桂酸甲酯发生加氢脱氧反应,促进C_(12)烷烃化合物生成。H_2-TPR、XRD、H_2-TPD和BET结果表明,高的还原温度有利于金属或合金活性中心形成,NiFe双金属催化剂的加氢活性取决于金属Ni、Fe和NiFe合金的含量;NiFe双金属催化剂吸附与活化H_2分子的能力明显受还原温度的影响。在研究的温度范围内,Ni活性中心具有优异的加氢和裂解性能,Fe物种的引入能有效抑制裂解性能。双金属催化剂的加氢活性顺序:NF420NF360NF450NF300,在420℃下经H_2还原制得的NF420催化剂具有最佳的月桂酸甲酯加氢性能,在反应温度为380℃时,月桂酸甲酯加氢转化率和烷烃化合物选择性分别高达93.3%和90.0%。  相似文献   

4.
采用等体积浸渍法制备了一系列负载型Ni基催化剂,利用XRD、H2-TPR、NH3-TPD 等技术表征了催化剂的理化特性,考察了载体(CMK-3、SiO2ZrO2、MgO、Al2O3)、助剂(Cu、Ce、Fe)对Ni基催化剂理化特性的影响,测试了230 oC、0.1 MPa冷压下催化剂对邻甲酚原位加氢反应的性能.结果表明,在负载型镍基催化剂作用下,甲醇水相重整制氢反应可以与邻甲酚的原位加氢反应相耦合;以CMK-3为载体的催化剂活性明显优于其他三种载体,邻甲酚的转化率为45.35%;助剂的添加对催化剂性能影响显著,Fe 的引入使原位加氢体系的转化率降至40.49%,助剂Ce、Cu的加入提高了Ni/CMK-3催化剂的原位加氢反应性能,转化率分别提高至64.6%、66.8%,Cu的添加改变了产物的分布,在产物中出现了新产物甲苯;同时探讨原位加氢反应路径及反应机理.  相似文献   

5.
Ni/γ-Al2O3中助剂的加入对于CH4/CO2重整反应性能的影响   总被引:5,自引:2,他引:3  
以含量为2%的K、Cu、La、Mg、Ca、Ba、Mo、Ce等多种金属作为助剂分别加入Ni/γ-Al2O3催化剂样品中,并对其分别用于CH4/CO2重整反应时的活性和积碳量进行了考察.研究结果表明加入助剂后的各种催化剂的活性变化不一.其中,以含Ca的催化剂效果最好,其甲烷的转化率可由原来的71.91%增加到72.92%,其次为La.但所有加入助剂后的催化剂的抗积碳性能均有所提高,特别是碱金属K的添加,使催化剂表面积碳量降到了0.1%.这表明添加碱金属或碱土金属助剂,对提高Ni/γ-Al2O3催化剂在CH4/CO2重整反应中的抗积炭性能有很大作用.  相似文献   

6.
刘建军  杨仲卿  张力 《燃料化学学报》2014,42(10):1253-1258
采用共浸渍法制备了不同Ni含量的Cu/γ-Al2O3催化剂,在固定床反应器上考察了该催化剂在含硫(SO2,0.01%,体积分数)气氛中对低浓度甲烷(3%)的催化燃烧活性及抗硫中毒稳定性。结果表明,SO2会使Cu/γ-Al2O3催化剂发生硫中毒,Ni的加入可增强其抗硫性能,而且随着Ni含量的增加,其抗硫性改善效果越明显。在Ni含量为10%的Cu/γ-Al2O3催化剂上反应10 h后,甲烷转化率仍可保持在96%以上。SEM、XRD和TPD表征结果显示,Ni的加入促使Cu/γ-Al2O3催化剂表面生成NiAl2O4尖晶石相,提高了催化剂的稳定性。随着Ni含量的增加,催化剂表面Lewis酸性降低,吸附SO2的能力减弱,可延缓催化剂硫中毒,同时也缩短了CO2分子在催化剂表面的停留时间,从而提高了甲烷催化燃烧效率。  相似文献   

7.
La2O3对沼气重整制氢催化剂Ni/γ-Al2O3的影响   总被引:4,自引:0,他引:4  
用浸渍法制备了不同La2O3含量的Ni/La2O3/γ-Al2O3催化剂,用CH4/CO2体积比为1的混合气体模拟沼气,考察了La2O3对沼气重整制氢催化剂Ni/γ-Al2O3的结构及催化性能的影响.运用XRD、H2-TPR、BET及TEM等手段对催化剂进行了表征.结果表明,La2O3对催化剂Ni/γ-Al2O3的影响主要取决于其含量.载体中La2O3的添加增强了Ni与Al2O3之间的相互作用.添加适量的La2O3能使催化剂具有更好的可还原性,并能增加金属Ni的分散性,抑制反应过程中Ni的烧结,提高载体对CO2的吸附能力,从而改善了催化剂的抗积炭性,使催化剂具有较好的活性及稳定性.反之,过量La2O3的掺杂会使催化剂的抗积炭性及活性下降.当La2O3含量为6%(ω)时,催化剂中Ni晶粒具有较好的分散性、还原性及抗积炭性,从而使催化剂具有更好的活性及稳定性.  相似文献   

8.
La2O3对沼气重整制氢催化剂Ni/γ-Al2O3的影响   总被引:2,自引:1,他引:1  
用浸渍法制备了不同La2O3含量的Ni/La2O3/γ-Al2O3催化剂, 用CH4/CO2体积比为1的混合气体模拟沼气, 考察了La2O3对沼气重整制氢催化剂Ni/γ-Al2O3的结构及催化性能的影响. 运用XRD、H2-TPR、BET及TEM等手段对催化剂进行了表征. 结果表明, La2O3对催化剂Ni/γ-Al2O3的影响主要取决于其含量. 载体中La2O3的添加增强了Ni与Al2O3之间的相互作用. 添加适量的La2O3能使催化剂具有更好的可还原性, 并能增加金属Ni的分散性, 抑制反应过程中Ni的烧结, 提高载体对CO2的吸附能力, 从而改善了催化剂的抗积炭性, 使催化剂具有较好的活性及稳定性. 反之, 过量La2O3的掺杂会使催化剂的抗积炭性及活性下降. 当La2O3含量为6%(w)时, 催化剂中Ni晶粒具有较好的分散性、还原性及抗积炭性, 从而使催化剂具有更好的活性及稳定性.  相似文献   

9.
Pd(Ni)对铜基催化剂的调变及对顺酐选择性加氢产物的调控   总被引:6,自引:0,他引:6  
 考察了在Cu-Ti-Al-O催化剂中添加Pd(或Ni)对活性中心Cu的调变作用及对顺酐加氢产物的调控.结果表明,Cu-Ni-Ti-Al-O是优良的顺酐选择性加氢制γ-丁内酯(GBL)反应的催化剂,催化剂中Cu和Ni含量的改变会影响加氢深度.当Cu含量较Ni含量高时,可以得到第三步加氢产物1,4-丁二醇和四氢呋喃,在270℃下其选择性为17.3%;当Ni含量较Cu含量高时,GBL选择性可达到100%.添加微量的Pd后,可加速活性组分Cu的还原,使Cu的还原更加彻底,获得纳米尺寸更小和晶格畸变率更大的Cu0晶粒,使顺酐第三步加氢产物的选择性显著提高.使用Cu-Pd-Ti-Al-O(n(Pd)/n(Cu)=0.08%)催化剂,在240℃下顺酐转化率为100%,1,4-丁二醇与四氢呋喃选择性为38.5%.  相似文献   

10.
镍盐前体对Ni/γ-Al2O3催化剂催化加氢活性的影响   总被引:2,自引:0,他引:2  
用X射线衍射、紫外-可见漫反射光谱、程序升温还原、CO化学吸附和微反应测试等方法研究了不同镍盐前体制备的负载型Ni/γ-Al2O3催化剂的结构和催化α-蒎烯加氢活性.结果表明,用醋酸镍前体制备的催化剂的催化加氢活性远高于用硝酸镍前体制备的催化剂,并且这种催化加氢活性的差异与不同前体制备的Ni O/γ-Al2O3样品表面Ni2 的分散状态及还原度密切相关.当Ni2 负载量远低于其在γ-Al2O3载体表面上的分散容量时,Ni2 优先嵌入载体表面四面体空位,随着Ni2 负载量的增加,嵌入载体表面八面体空位的Ni2 的比例增大.由于醋酸根阴离子对γ-Al2O3载体表面四面体空位的屏蔽效应大于硝酸根阴离子,在醋酸镍前体制备的Ni O/γ-Al2O3样品表面,Ni2 倾向于嵌入载体表面八面体空位且易被还原为金属态Ni0,故用醋酸镍前体制备的Ni/γ-Al2O3催化剂的催化α-蒎烯加氢活性高于用硝酸镍前体制备的催化剂.  相似文献   

11.
制备了一系列铜质量分数不同的CuNi/γ-Al2O3催化剂,进行了TPR和XRD表征并测定了该系列催化剂对苯加氢制环己烷的催化活性。结果表明,助剂Cu的负载量对低温(160 ℃)还原后催化剂的催化活性影响很大,在铜镍原子摩尔比为1∶1时,催化剂具有较高的催化活性和稳定性;添加铜组分可促进镍在载体表面分散,使负载NiO的还原温度降低,催化活性提高。  相似文献   

12.
用X-射线衍射(XRD)、紫外-可见漫散射光谱(UV-Vis DRS)、程序升温还原(TPR)、CO化学吸附和微反测试等方法研究了Ni2+在γ-Al2O3上的分散状态和负载型Ni/γ-Al2O3催化剂的α-蒎烯加氢催化活性。结果表明,当Ni2+负载量远低于其在γ-Al2O3载体表面分散容量时,Ni2+优先嵌入载体表面四面体空位,随着Ni2+负载量的增加,嵌入载体表面八面体空位Ni2+的比例增大。由于八面体Ni2+易被还原为金属态Ni0,NiO/γ-Al2O3样品的还原度随Ni2+负载量的增加而大幅度地增加,经氢还原所得Ni/γ-Al2O3催化剂的CO吸附量和α-蒎烯加氢催化活性大幅度增加。对La2O3助剂的作用进行了研究,结果表明分散在γ-Al2O3上的La3+物种可阻止Ni2+嵌入γ-Al2O3表面四面体空位,增大了八面体Ni2+物种所占比例,提高了催化剂的还原度,故Ni-La2O3/γ-Al2O3催化剂催化活性高于Ni/γ-Al2O3催化剂。  相似文献   

13.
流化床甲烷部分氧化制合成气Ni催化剂及助剂La的作用   总被引:11,自引:0,他引:11  
在流化床中,考察了不同Ni担载量的Ni/γ-Al2O3催化剂对POM反应的催化性能,以8%Ni最佳,TPR结果表明。催化剂表面主要有两种化学状态的NiO。当镍担载量≤2%时,催化剂表面 仅存在一种高温下才能被还原的NiO,在Ni催化剂中添加La,可削弱NiO与载体间的相互作用,并且可减缓在CH4+O2气氛下升温过程中NiO与载体发生强相互作用 生成NiAl2O4,因此添加La的Ni催化剂在750℃就能引发甲烷部分氧化(POM)反应,且反应引发后可获得与经700℃H2还原后的Ni^0催化剂相同的反应性能。  相似文献   

14.
A series of hybrid catalysts were made by physically mixing Cu-ZrO 2 and γ-Al 2 O 3,for former it was modified with different loadings of La 2 O 3 prepared by co-precipitation method.The catalysts were characterized by BET,XRD,N 2 O-adsorption,EXAFS,H 2-TPR,NH 3-TPD techniques and evaluated in the synthesis of dimethyl ether from syngas.The results show that La 2 O 3 promoted catalysts displayed a significantly better catalytic performance compared with Cu-ZrO 2 /γ-Al 2 O 3 catalyst in CO conversion and DME selectivity,and the optimum catalytic activity was obtained when the content of La 2 O 3 was 12 wt%.The characterizations reveal that high copper dispersion,facile reducibility of copper particles and appropriate amount of acidic sites are responsible for the superior catalytic performance.  相似文献   

15.
The transition metals (Cu, Co, and Fe) were applied to modify Ni/Ce0.2Zr0.1Al0.7Oδ catalyst.The effects of transition metals on the catalytic properties of Ni/Ce0.2Zr0.1Al0.7Oδ autothermal reforming of methane were investigated. The Ni-supported catalysts were characterized by XRD, TPR and XPS.Tests in autothermal reforming of methane to hydrogen showed that the addition of transition metals (Cu and Co) significantly increased the activity of catalyst under the conditions of lower reaction temperature,and Ni/Cu0.05Ce0.2Zr0.1Al0.65Oδ was found to have the highest conversion of CH4 among all catalysts in the operation temperatures ranging from 923 K to 1023 K. TPR, XRD and XPS measurements indicated that the cubic phases of CexZr1-xO2 solid solution were formed in the preparation process of catalysts.Strong interaction was found to exist between NiO and CexZr1-xO2 solid solution. The addition of Cu improved the dispersion of NiO, inhibited the formation of NiAl2O4, and thus significantly promoted the activity of the catalyst Ni/Cu0.05Ce0.2Zr0.1Al0.65Oδ.  相似文献   

16.
采用溶胶凝胶法制备了一系列不同TiO2含量的TiO2-Al2O3复合载体,并通过浸渍法制备了NiO/TiO2-Al2O3催化剂。分别考察了不同TiO2含量的NiO/TiO2-Al2O3催化剂及反应温度对CO甲烷化催化性能的影响。实验结果表明,当复合载体中TiO2质量分数为30%,反应温度为350~450 ℃时,催化剂催化活性较高。利用N2吸附-脱附(BET)、X射线衍射(XRD)及H2程序升温还原(H2-TPR)等手段对催化剂物化性能进行了表征。结果表明,加入适量的TiO2能抑制镍铝尖晶石NiAl2O4物种的生成,改善NiO的表面分散性能,避免大晶粒NiO的形成,也改善了催化剂的还原性能,从而提高催化剂的CO甲烷化活性。  相似文献   

17.
Decomposition of methane in the presence of coprecipitated nickel-based catalysts to produce carbon fibers was investigated. The reaction was studied in the temperature range of 773 K to 1073 K. At 1023 K, the catalytic activities of three catalysts kept high at the initial period and then decreased with the reaction time. The lifetimes of Ni-Cu-Al and Ni-La-Al catalysts are longer than that of Ni-Al catalyst. With three catalysts, the yield of carbon fibers was very low at 773 K. The yield of carbon fibers for Ni-La-Al catalyst was more than those for Ni-Al and Ni-Cu-Al catalysts. For Ni-La-Al catalyst, the elevation of temperature from 873 K up to 1073 K led gradually to an increase in the yield of carbon fibers. XRD studies on the Ni-La-Al catalyst indicate that La2NiO4 was formed. The formation of La2NiO4 is responsible for the increase in the catalytic lifetime and the yield of carbon fibers synthesized on Ni-La-Al at 773 1073 K. Carbon fibers synthesized on Ni-Al catalyst are thin, long carbon nanotubes. There are bamboo-shaped carbon fibers synthesized on Ni-Cu-Al catalyst. Carbon fibers synthesized on Ni-La-Al catalyst have large hollow core, thin wall and good graphitization.  相似文献   

18.
Rare-earth (La, Ce, Yb) promoted Ni/γ-Al2O3 catalysts were prepared by impregnation method. Activity and carbon formation resistance of the prepared catalysts were evaluated under various reaction conditions. Catalyst characterizations with TG, TPR and H2 chemisorption were carried out to investigate the promoting mechanism. Experimental results show that rare-earth promoters, especially Yb promoter, obviously improve the activity and carbon formation resistance of Ni/γ-Al2O3 catalyst, and Yb-Ni catalyst shows even higher performance than several commercial catalysts. According to the characterization results, Yb promoter enhances the interaction between the active metal and support, thus increasing the active metal’s dispersion and improving its performance. Furthermore, the obvious difference in diesel conversion between Yb-Ni catalyst and others was shown in the temperature range of 450-550 °C, which would be the reason for its excellent carbon resistance.  相似文献   

19.
A series of Co/γ-Al2O3 catalysts were prepared with the impregnation .method and characterized by means of the BET specific surface area, X-ray diffraction (XRD), thermogravimetric analysis (TGA) and Laser Raman spectroscopy. The Co/γ-Al2O3 catalysts were activated by using H2, 20%CH4/H2 or CH4, re-spectively. There was no obvious difference between the activities of the Co/γ-Al2O3 catalyst activated by us-ing the different activation methods for methane dry reforming. The catalytic properties of the Co/γ-Al2O3 catalysts with different Co loadings were also investigated. The optimized Co loading for the Co/γ-Al2O3 cata-lyst pretreated with 20% CH4/H2 is around 12% (mass fraction).  相似文献   

20.
采用共沉淀法分别制备了不同F-T组分(Fe、Co、Ni)改性的KCuZrO_2催化剂,并用于催化CO加氢合成异丁醇。通过BET、XRD、TEM、XPS、H_2-TPR、CO-TPD以及in-situ DRIFTS对催化剂进行了表征。结果显示,F-T组分的加入促进了乙醇和丙醇的形成,但是对异丁醇选择性影响不同。结果表明,Fe促进了催化剂中各组分的分散,活性组分Cu在催化剂表面发生了富集,提高了H_2/CO活化吸附;另外,KFeCuZrO_2的催化剂表面含有较多的C1物种,有利于乙醇和丙醇进一步发生β-加成反应得到异丁醇,而Co和Ni改性的催化剂上缺少足够的C1物种,因此,异丁醇的选择性并未明显增加。Co的引入对催化剂结构以及Cu的分散影响不大,但是Co改性后催化剂性能有所下降,其原因是催化剂发生了失活; Ni添加后催化剂比表面积有所减小,且催化剂表面Cu/Zr物质的量比也降低到0. 19,催化剂粒径增大,Cu-Zr之间相互作用减弱,异丁醇选择性降低。  相似文献   

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