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1.
介孔Ni/CaO-ZrO2纳米复合物催化甲烷和二氧化碳重整   总被引:1,自引:0,他引:1  
刘水刚  李军平  赵宁  魏伟  孙予罕 《催化学报》2007,28(11):1019-1023
采用溶胶-凝胶法制备了一种具有高热稳定性的介孔Ni/CaO-ZrO2纳米复合物.此纳米复合物在甲烷/二氧化碳重整中表现出较高的活性和稳定性,且经连续运行50h后,其催化活性没有明显降低,稳定性显著高于Ni/Al2O3或Ni/SiO2负载型催化剂.这是由于反应过程中纳米Ni颗粒尺寸被有效稳定以及碱性组分CaO的存在,催化剂中相互嵌合的Ni,ZrO2和CaO的颗粒尺寸均为10nm左右,堆积形成了海绵状的介孔结构.CaO的存在使催化剂具有较强的碱性,促进了反应物CO2的化学吸附和解离.  相似文献   

2.
碱性助剂的添加对Ni/CaO-Al2O3催化剂性能的影响   总被引:8,自引:1,他引:7  
傅利勇  吕绍洁 《分子催化》2000,14(3):179-183
在CH4、 CO2和O2制合成气的反应中, 通过在Ni/CaO-Al2O3催化剂中添加碱性助剂K2O、 MgO和La2O3, 使催化剂的性能得到了改善. 实验结果表明, MgO和La2O3助剂的添加, 有利于提高催化剂的活性;添加K2O, 却相反. 测得催化剂上积炭量的顺序为: Ni-La2O3/CaO-Al2O3相似文献   

3.
对具有磁铅石结构的Sr1-xLaxNiAl11O19对甲烷与二氧化碳重整反应的催化活性、积炭量和稳定性进行了研究.不同还原温度下催化剂的XRD和催化活性的实验结果表明,金属镍是CH4+CO2重整反应的活性组分,金属镍含量越大,反应活性越高.反应后催化剂积炭量的分析结果说明,在相同镍含量和分散度的情况下,La3+离子对Sr2+离子调变,可以降低催化剂的表面酸性,提高催化剂的抗积炭能力.LaNiAl11O19是一种具有较好催化活性、稳定性和抗积炭性能的催化剂.  相似文献   

4.
Ni catalysts supported on Al2O3, ZrO2-Al2O3, CeO2-Al2O3 and ZrO2-CeO2-Al2O3 were prepared by coprecipitation method, and their catalytic performances for autothermal reforming of methane to hydrogen were investigated. The Ni-supported catalysts were characterized by XRD, TPR and XPS. The relationship between the structures and catalytic activities of the catalysts was discussed. The results showed that the catalytic activity and stability of the Ni/ZrO2-CeO2-Al2O3 catalyst was better than those of other catalysts with the highest CH4 conversion, H2/CO and H2/COx ratio at 750 ℃. The catalyst showed a little deactivation along the reaction time during its 72 h on stream with the mean deactivation rate of 0.08%/h. The catalytic performance of the Ni/ZrO2-CeO2-Al2O3 catalyst was also affected by reaction temperature, no2 : nCH4 molar ratio and nH2O : nCH4 molar ratio. TPR, XRD and XPS measurements indicated that the formation of ZrO2-CeO2 solid solution could improve the dispersion of NiO, and inhibit the formation of NiAl2O3, and thus significantly promoted the catalytic activity of the Ni/ZrO2-CeO2-Al2O3 catalyst.  相似文献   

5.
The Catalytic performances for methane steam reforming reaction ofNi/Al_2O_3(commercial), Ni/Al_2O_3 (developed surface )and Ni/Al_2O_3-R_xO_y (R israre earth oxide) Catalysts were investigated by means of X-ray diffraction,TG, SEM/ X-ray analysis, pulse gas chromatography,BET and Mercuryporsiniter techniques. The distribution of rear earth oxides on the supports,themetal-support (additives) interaction and the influence of rare earth oxideadditives on the dispersion of active components,catulytic activities,variationof nickel crystallites size,CO chemisorption,formation of NiAl_2O_4 as well asthe reducibility of the catalysts were examined.The presence of rare earthoxides in the Ni/Al_2O_3 (developed surface) results in great improvement ofstubility through suppressing the growth of Ni crystallites,the oxidation of themetallic Ni and the formation of NiAl_2O_4. The effect of heavy rare earth oxidesis more distinct than that of the light ones.Strong metal support interaction(SMSI) exists in Ni/Al_2O_3- R  相似文献   

6.
Ni/Si2催化剂具有较好的低碳烷烃与二氧化碳重整制合成气的反应性能,添加La2O3助剂和K2O助剂可提高催化剂活性和合成气收率,从而进一步改善催化剂的低碳烷烃与CO2重整制合成气的反应性能,研制的KLaNi/Si2催化剂,用于天然气与CO2重整反应制合成气可达97%的低碳烷烃转化率和95%以上的合成气收率。  相似文献   

7.
The Ni/CeO2-ZrO2-A12O3 catalyst with different A12O3 and NiO contents were prepared by hydrothermal synthesis method. The catalytic performance for CO2 reforming of CH4 reaction, the interaction among components and the relation between Ni content and catalyst surface basicity were investigated. Results show that the interaction between NiO and A12O3 is stronger than that between NiO and CeO2-ZrO2. The addition of A12O3 can prevent the formation of large metallic Ni ensembles, increase the dispersion of Ni, and improve catalytic activity, but excess A12O3 causes the catalyst to deactivate easily. The interaction between NiO and CeO2 results in more facile reduction of surface CeO2. The existence of a small amount of metallic Ni can increase the number of basic sites. As metallic Ni may preferentially reside on the strong basic sites, increasing Ni content can weaken the catalyst basicity.  相似文献   

8.
The Ni/CeO2-ZrO2-Al2O3 catalyst with different Al2O3 and NiO contents were prepared by hydrothermal synthesis method. The catalytic performance for CO2 reforming of CH4 reaction, the interaction among components and the relation between Ni content and catalyst surface basicity were investigated. Results show that the interaction between NiO and Al2O3 is stronger than that between NiO and CeO2-ZrO2.The addition of Al2O3 can prevent the formation of large metallic Ni ensembles, increase the dispersion of Ni, and improve catalytic activity, but excess Al2O3 causes the catalyst to deactivate easily. The interaction between NiO and CeO2 results in more facile reduction of surface CeO2. The existence of a small amount of metallic Ni can increase the number of basic sites. As metallic Ni may preferentially reside on the strong basic sites, increasing Ni content can weaken the catalyst basicity.  相似文献   

9.
The effect of promoter Ce on the catalytic performance of Ni/Al2O3 catalyst for autothermal reforming of methane to hydrogen was investigated. The catalysts were characterized by X-ray diffraction (XRD), temperature-programmed reduction (TPR), and X-ray photoelectron spectroscopy (XPS). The results indicated that the catalytic performance of the catalysts was improved with the addition of Ce. Ni/Ce30Al70Oδ showed the highest CH4 conversion in operation temperatures ranging from 650 ℃ to 850 ℃. At the same time, the decrease in H2/CO ratio with increasing reaction temperature was consistent with the fact that water-gas shift reaction was thermodynamically unfavorable at higher temperatures. The XRD result indicated that adding Ce to Ni/Al2O3 catalyst prevented the formation of NiAl2O4 and facilitated the formation of NiO. The formation of NiO increased the number of active sites, resulting in higher activity. Comparing the TPR profiles of Ni/Ce30Al70Oδ with Ni/Al2O3, it could be clearly observed that with the addition of Ce, the total reduction peak areas in the middle and low temperatures increased. It was most probably that the addition of Ce inhibited the stronger interaction between Ni and Al2O3 to form the phase of NiAl2O4, and favored the formation of the strong interaction between NiO species and CeO2. Therefore, the addition of Ce to the Ni/Al2O3 catalyst increased the active surface that promoted the activity of the catalyst.  相似文献   

10.
添加碱金属对甲烷与空气制合成气的催化剂性能的影响   总被引:3,自引:1,他引:3  
考察了添加在镍基催化剂中的碱金属助剂 ,对甲烷与空气制合成气的催化反应性能的影响 ;并用 TPO、TPR、CO2 程序升温脱附 (TPD)、XPS及 CO脉冲色谱技术 ,对催化剂进行了表征 .实验表明 ,碱金属助剂对降低催化剂结炭有一定的作用 ,催化剂的抗积炭性能为 Ni- K2 O/Ca O- Al2 O3>Ni- L i2 O/Ca O- Al2 O3>Ni- Na2 O/Ca O-Al2 O3>Ni/Ca O- Al2 O3.在实验中发现 ,碱金属的添加 ,可使催化剂的 Ni比表面积变小、吸附 CO2 的能力增强 ,且结合能可发生不同程度的改变 .从而解释了碱土金属助剂对催化剂活性和抗积炭性的影响 .实验显示 ,Ni-L i2 O/Ca O- Al2 O3具有较好的活性和抗积炭性能  相似文献   

11.
CeO2-promoted Ni/Al2O3-ZrO2 (Ni/Al2O3-ZrO2-CeO2) catalysts were prepared by a direct sol-gel process with citric acid as gelling agent. The catalysts used for the methane reforming with CO2 was studied by infrared spectroscopy (IR), thermal gravimetric analysis (TGA), microscopic analysis, X-ray diffraction (XRD) and temperature-programmed reduction (TPR). The catalytic performance for CO2 reforming of methane to synthesis gas was investigated in a continuous-flow micro-reactor under atmospheric pressure. TGA, IR, XRD and microscopic analysis show that the catalysts prepared by the direct sol-gel process consist of Ni particles with a nanostructure of around 5 nm and an amorphous-phase composite oxide support. There exists a chemical interaction between metallic Ni particles and supports, which makes metallic Ni well dispersed, highly active and stable. The addition of CeO2 effectively improves the dispersion and the stability of Ni particles of the prepared catalysts, and enhances the adsorption of CO2 on the surface of catalysts. The catalytic tests for methane reforming with CO2 to synthesis gas show that the Ni/Al2O3-ZrO2-CeO2 catalysts show excellent activity and stability compared with the Ni/Al2O3 catalyst. The excellent catalytic activity and stability of the Ni/Al2O3-ZrO2-CeO2 are attributed to the highly, uniformly and stably dispersed small metallic Ni particles, the high reducibility of the Ni oxides and the interaction between metallic Ni particles and the composite oxide supports.  相似文献   

12.
甲烷二氧化碳重整反应不仅可以将两种温室气体转化为更具有工业应用价值的合成气,而且反应产物中的H_2/CO比也比较适宜合成气的深加工过程,兼具环境效益和经济效益,因此受到广泛的关注与研究.但是,阻碍该过程工业化的主要问题在于反应中Ni基催化剂非常容易积碳,从而导致催化剂失活.近年来,甲烷二氧化碳催化重整领域的研究主要集中在反应机理和催化剂设计,其中大多数的研究结果表明,Ni基催化剂的抗积碳性能取决于反应过程中积碳速率与消碳速率之间的平衡.CO_2是该反应体系中唯一的氧源,因此Ni基催化剂的消碳能力在很大程度上取决于其对CO_2裂解活化能力的强弱.早期的文献中一般认为,CO_2的裂解活化与载体的Lewis碱性位点强弱相关,因此添加碱性氧化物助剂,比如MgO和CaO等,能够增强Ni基催化剂的碱性强度和CO_2吸附性能,有利于催化剂表面碳物种的转化,从而增强催化剂的稳定性.已有文献报道,添加微量MgO助剂(1 wt%)尽管没有影响Ni基催化剂的碱性强度,但是能够明显增强Ni基催化剂的稳定性,但没有对此结果给出明确的解释.在非均相催化研究领域中,活性金属与助剂在催化剂表面的分散性,是研究其催化作用的重要前提.大部分甲烷二氧化碳催化重整研究工作中,助剂的引入通常采用浸渍法,但是这种制备方法并不能有效保证助剂的分散度.本研究工作利用了水滑石材料的"记忆效应",将0.42 wt%Mg~(2+)引入到由Ni-Al水滑石前驱体焙烧后得到的Ni/Al_2O_3催化剂中.X射线能谱仪的结果表明,微量MgO助剂均匀分散在Ni/Al_2O_3催化剂表面上.经X射线衍射、CO_2程序升温脱附和H_2程序升温还原表征验证,添加微量的MgO助剂并没有对Ni晶粒尺寸、金属载体相互作用以及Al_2O_3载体表面碱性强度产生明显作用;然而甲烷二氧化碳重整活性评价测试和反应后催化剂的O2程序升温氧化实验结果显示,微量MgO助剂能明显增强Ni/Al_2O_3催化剂的稳定性,并且有效地阻碍了石墨碳在催化剂表面的形成.表面脉冲吸附实验结果证实,微量MgO助剂促进了CO_2在Ni颗粒表面的裂解活化,进而可以及时消除Ni金属表面由甲烷裂解产生的碳物种,防止其迁移、聚集和生成石墨碳.  相似文献   

13.
采用浸渍-还原法制备的Ni/MgO/Al2O3在CH4与CO2重整制合成气反应中显示出良好的催化性能和一定的抗积炭能力;在1023K下流动反应气氛中连续运转100h,未见活性下降,CH4及C弦均为90%左右,CO收率高于90%,实验还发现,CH4转化率随着原料气中CO2浓度的增加而升高,当V(CO2)/V(CH4)=2时CH4转化率可达100%,通过BET比表面积测定及XRD,TEM等分析手段,比  相似文献   

14.
傅利勇  吕绍洁 《分子催化》1999,13(5):367-372
在CH4、CO2 催化氧化制合成气反应中, Ni/Al2O3 催化剂在高温下生成NiAl2O4 尖晶石,是导致催化剂失活的一个重要因素. 通过向载体(Al2O3)中添加各种氧化物, 使得催化剂的抗氧化性能得到改善. 并运用TPR、XRD对催化剂进行表征, 发现催化剂的抗氧化性顺序为: Ni/CaO-Al2O3 > Ni/MgO-Al2O3 > Ni/CeO2-Al2O3 > Ni/La2O3-Al2O3 > Ni/Y2O3-Al2O3 > Ni/TiO2-Al2O3> Ni/Al2O3> Ni/Fe2O3-Al2O3.  相似文献   

15.
La2O3对Ni/γ-Al2O3甲烷化催化剂的助催化作用   总被引:14,自引:0,他引:14  
我国将稀土作为助剂引入镍基甲烷化催化剂,大大提高了催化剂的活性和热稳定性,并已投入工业应用[1-3].稀土对不同镍催化剂反应性能及其作用机理的研究已有一些报导[3-7].谢有畅等观察到镍负载在经单层La2O3改性的γ-Al2O3表面,其晶粒要比没有La2O3时小得多.Rotgerink等认为添加La后反应速率的增加不只是由于几何效应,而是La对甲烷化本身有促进作用,单位镍表面的活性是随La含量不同而改变的,活性增加的同时表观活化能也增加[5].作为助剂的La2O3在氢还原和反应过程中的变化及其作用的研究和讨论较少,目前一般认为添…  相似文献   

16.
采用La2(CO3)3空气焙烧法制备了La2O2CO3载体、采用浸渍法制备了Ni,Fe不同比例的Ni-Fe双金属催化剂及Ni/La2O2CO3,Fe/La2 O2 CO3催化剂,考察了各催化剂从300~700℃催化乙醇水蒸气重整反应的性能,并用BET,XRD,TPR等技术对催化剂进行表征。结果表明,相对单一金属催化剂,Ni-Fe双金属催化剂均表现出更高的活性,这可能是因为高分散的Ni,Fe和LaFeyNi1-yO3的共存作用。其中Ni含量为10%,Fe含量为5%时的Ni-Fe/La2O2CO3表现出最高的活性,400℃时乙醇的转化率为100%,H2的选择性最高达到94.1%,而CO的选择性则低至1.2%。  相似文献   

17.
李凝  罗来涛 《分子催化》2005,19(5):366-370
以大孔Al2O3为基载体,采用沉积-沉淀法和溶胶-沉积法制备了负载型纳米ZrO2/Al2O3复合载体.用XRD、TEM和比表面与孔径测定等手段对载体进行了表征.结果表明,负载型纳米ZrO2/Al2O3复合载体具有较大的比表面积和适宜的孔径分布,纳米ZrO2在载体上呈单层均匀分布.以CH4-CO2重整制合成气为探针反应,考察了Ni/ZrO2/Al2O3催化剂的活性和选择性.  相似文献   

18.
毛丽萍  吕功煊 《分子催化》2007,21(4):365-367
甲醇、乙醇等低碳醇催化重整制氢是燃料电池氢源的重要技术之一.乙醇和甲醇相比,更容易存储,低毒且可以从生物质经发酵获得[1,2].乙醇可以通过裂解、部分氧化、水蒸气重整和氧化重整等途径制氢[3~6].已有的文献表明,Pt、Ru、Rh、Pd等贵金属可有效地催化乙醇重整反应,载体多选用  相似文献   

19.
考察了添加在镍基催化剂中的碱金属助剂对甲烷与空气制合成气的催化反应性能的影响。并用TPO、TPR、CO_2程序升温脱附(TPD)、XPS及CO脉冲色谱对催化剂进行了表征。实验结果表明,碱金属助剂对降低催化剂结炭有一定作用;催化剂抗积炭顺序为; Ni-K2O/CaO/Al2O3>Ni-Li2O/CaO-Al2O3>Ni-Na2O/CaO-Al2O3>Ni/CaO/Al2O3。在实验中,我们发现碱金属的添加使催化剂的Ni晶粒变大和吸附CO_2的能力增强,结合能发生不同程度的变化。这些实验结果从不同方面解释了碱金属助剂对催化剂活性和抗积炭性的影响。实验结果表明Ni-Li2O/CaO-Al2O3具有较好的活性和抗积炭性。  相似文献   

20.
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   

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