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1.
采用浸渍法制备了ZrO2-SiO2复合载体和Ni质量分数为6%的Ni/ZrO2-SiO2催化剂,考察了载体制备时浸渍溶液pH值、焙烧温度和催化剂制备时的焙烧温度对Ni/ZrO2-SiO2催化剂煤气甲烷化反应性能的影响。采用X射线衍射、程序升温还原和扫描电子显微镜等方法对催化剂进行了表征。结果表明,载体浸渍溶液pH值为8.0~9.0, 载体焙烧温度为550 ℃,催化剂焙烧温度为450 ℃时,Ni/ZrO2-SiO2催化剂在煤气甲烷化反应中显示了最优的催化性能,CO转化率100%,CO2转化率1.8%,CH4生成速率16.6 mmol/(h·g)。进一步表征发现,制备ZrO2-SiO2复合载体时,增大浸渍溶液的pH值有利于形成粒径较小的亚稳态四方晶相ZrO2,可见四方晶相ZrO2更有利于甲烷化反应;载体焙烧温度会影响到NiO粒径的大小和其在催化剂表面的分散,温度过高和过低都会导致NiO粒径大小的不适宜以及分散性的降低;催化剂焙烧温度过高则会导致NiO与载体间的相互作用减弱,NiO分散性降低。  相似文献   

2.
The performances of CO selective oxidation in hydrogen-rich gas over four catalytic systems of CuO/ZrO2, CuO/MnO2, CuO/CoO and CuO/CeO2 were compared. The reducibility of these catalysts and the effect of CuO and CeO2 molar ratio of CuO/CeO2 catalysts on the activity of selective CO oxidation are investigated by XRD and TPR methods. The results show that the catalysts with the exception of CuO/ZrO2 have the interactions between CuO and CoO, CeO2 or MnO2, which result in a decrease in the reduction temperature. Among the catalysts studied, CuO/ZrO2 catalyst shows the lowest catalytic activity while CuO/CeO2 catalyst exhibits the best catalytic performance. The CuO(10%)/CeO2 catalyst attains the highest CO conversion and selectivity at 140 and 160℃. The addition of 9% H2O in the reactant feed decreases the activity of CuO/CeO2 catalyst but increases its CO selectivity.  相似文献   

3.
Ni/ZrO2催化剂上甲烷水蒸气重整反应的研究   总被引:4,自引:2,他引:4  
研究了Ni/ZrO2催化剂对甲烷水蒸气重整制合成气的反应性能。考察了催化剂的还原温度、载体焙烧温度以及反应温度、原料配比和空速等对催化剂性能的影响。利用XRD、TEM、XPS等手段对催化剂的织构形貌进行了表征。研究表明,Ni/ZrO2催化剂用于甲烷水蒸气重整制合成气不仅具有较高的活性,也具有较好的稳定性。水蒸气比增加,CH4转化率增大、CO选择性下降。CH4转化率及CO选择性均随空速增大而下降。使用10%Ni/ZrO2催化剂,在650 ℃、空速1.984×104 h-1、原料气配比H2O∶CH4∶N2=2∶1∶2.67的条件下,获得CH4转化率85%、CO选择性70%的结果。  相似文献   

4.
考察了载体对Ni催化剂乙醇水蒸气重整制氢反应性能的影响。结果表明,Ni/CeO2催化剂具有较好的低温活性和氢气选择性。对Ni担载量和焙烧温度考察发现,400℃焙烧的15%NiCeO2催化剂具有较好的催化性能;继续升高焙烧温度引起NiO和CeO2粒子的显著增大,导致对氢气选择性的降低。较小的Ni和CeO2粒子有利于乙醇水汽重整反应的进行,而大的粒子倾向于乙醇的分解反应。 350℃时,在反应过程中分别添加CO、CO2和CH4的结果表明没有发生CO和CO2甲烷化反应,而发生了一定程度的CH4水汽重整反应。  相似文献   

5.
Amorphous Ni-Ru-B/ZrO2 catalysts were prepared by chemical reduction method. The effects of Ni-Ru-B loading and Ru/Ni mole ratio on the catalytic performance for selective CO methanation from reformed fuel were studied, and the catalysts were characterized by BET, ICP, XRD and TPD. The results showed that Ru strongly affected the catalytic activity and selectivity by increasing the thermal stability of amorphous structure, promoting the dispersion of the catalyst particle, and intensifying the CO adsorption. For the catalysts with Ru/Ni mole ratio under 0.15, the CO methanation conversion and selectivity increased significantly with the increasing Ru/Ni mole ratio. Among all the catalysts investigated, the 30 wt% Ni-Ru-B loading amorphous Ni61Ru9B30/ZrO2 catalyst with 0.15 Ru/Ni mole ratio presented the best catalytic performance, over which higher than 99.9% of CO conversion was obtained in the temperature range of 230°C~250°C, and the CO2 conversion was kept under the level of 0.9%.  相似文献   

6.
Series of carbon nanotube supported Ru-based catalysts were prepared by impregnation method and applied successfully for complete removal of CO by CO selective methanation from H2-rich gas stream conducted in a fixed-bed quartz tubular reactor at ambient pressure.It was found that the metal promoter,reduction temperature and metal loading affected the catalytic properties significantly.The most excellent performance was presented by 30 wt% Ru-Zr/CNTs catalyst reduced at 350℃.Since it decreased CO concentration to below 10ppm from 12000ppm by CO selective methanation at the temperature range of 180-240℃,and kept CO selectivity higher than 85% at the temperature below 200℃.Characterization using XRD,TEM,H2-TPR and XPS suggests that Zr modification of Ru/CNTs results in the weakening of the interaction between Ru and CNTs,a higher Ru dispersion and the oxidization of surface Ru.Amorphous and high dispersed Ru particles with small size were obtained for 30 wt% Ru-Zr/CNTs catalyst reduced at 350℃,leading to excellent catalytic performance in CO selective methanation.  相似文献   

7.
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   

8.
采用等体积浸渍法制备了高镍负载量的13%Ni/SiO2(13Ni/Si)催化剂和低镍负载量的7%Ni-2%Ce/SiO2(7Ni-2Ce/Si)催化剂.通过N2物理吸附、XRD、FT-IR、TEM、H2-TPR/TPD等技术对催化剂进行表征,在连续流动微反装置上考察了催化剂的CO甲烷化活性.结果表明,在7Ni-2Ce/Si催化剂中NiO、CeO2和SiO2之间产生的相互作用,改变了Ni-O-Si键的化学环境,促进了氧化镍物种的分散和还原,进而提高了催化剂的活性比表面积,同时在催化剂表面形成了新的中等强度的CO吸附中心.与高镍负载量的13Ni/Si催化剂相比,低镍负载量的7Ni-2Ce/Si表现出更高的CO吸附能力和甲烷化活性.常压下,在CO体积分数1%和空速7 000 h-1的反应条件下,低镍负载量的7Ni-2Ce/Si催化剂上CO完全甲烷化最低温度为230 ℃,比高镍负载量的13Ni/Si低了30 ℃.  相似文献   

9.
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   

10.
采用共沉淀法制备了一系列Cu-Zr-Ce-O复合氧化物催化剂,考察了ZrO2加入量、不同再生方法对催化剂CO选择性氧化反应性能的影响,并通过DSC-TPR、XRD和SEM手段对催化剂进行了表征。结果表明,添加ZrO2的Cu1Zr1Ce9Oδ催化剂在160 ℃~200 ℃,具有99%以上的CO转化率,并且催化剂的选择性相对较高。适量ZrO2的加入能够细化催化剂的颗粒,提高催化剂的热稳定性,改变催化剂的聚结方式。经氮气、氢气及氧气再生处理后的Cu1Zr1Ce9Oδ催化剂,催化活性有所不同,其中经氧气处理后的催化剂,表面吸附氧体积分数较高,活性恢复较好。  相似文献   

11.
Ni/Al2O3 catalysts with different amounts of manganese ranging from 1 to 3 wt% as promoter were prepared by co-impregnation method. The catalysts were characterized by N2 physisorption, XRD, TPR, SEM and TEM. Their catalytic activity towards syngas methanation reaction was also investigated using a fixed-bed integral reactor. It was demonstrated that the addition of manganese to Ni/Al2O3 catalysts can increase the catalyst surface area and average pore volume, but decrease NiO crystallite size, leading to higher activity and stability. The effects of reaction temperature, pressure and weight hourly space velocity (WHSV) on carbon oxides conversion and CH4 formation rate were also studied. High carbon oxides conversion, CH4 selectivity and formation rate were achieved at the reaction temperature range of 280 300℃.  相似文献   

12.
NiO/SnO2-ZrO2催化剂的制备及甲烷燃烧催化性能的研究   总被引:6,自引:2,他引:6  
利用正交分析,通过溶胶凝胶-超临界干燥及复合浸渍的方法制备了NiO/SnO2-ZrO2催化剂,进行了活性评价,考察了前驱物、NiO、SnO2含量及制备方法对催化剂活性及稳定性的影响,并采用XRD、TEM对催化剂进行了表征分析,结果表明:NiO/SnO2-ZrO2催化剂具有良好的甲烷燃烧催化性能(t100%=640 ℃),其活性、稳定性与制备参数密切相关,其中NiO含量是影响催化剂活性、稳定性的最主要参数,它对催化剂稳定性和活性的影响规律正相反; SnO2组分的添加使ZrO2单斜相稳定,对催化剂起到了良好的稳定化作用,发现当SnO2含量在6 mol%左右时,催化剂具有较好的稳定性;对于制备方法,在凝胶前加入活性组分有利于催化剂的高活性,而在凝胶后加入活性组分,则有利于催化剂保持较好的稳定性;活性组分前驱物对催化剂性能影响不大,采用Ni(NO3)2作为前驱物较为合适。  相似文献   

13.
采用溶胶凝胶-超临界干燥的方法制备了NiO/CuO-ZrO2催化剂,分别考察了焙烧温度、活性组分含量对催化剂甲烷燃烧性能的影响,并利用XRD、物理吸附等手段考察了两个参数对催化剂性能影响的本质原因,发现NiO/CuO-ZrO2催化剂具有较高的催化活性,较好的高温(1 000 ℃)反应稳定性,焙烧温度对催化剂的影响很大,500 ℃是合适的焙烧温度,通过试验发现活性组分NiO为5 mol%时催化剂适于在相对较低的温度下使用,而NiO为15 mol%时,催化剂具有较好的高温稳定性。  相似文献   

14.
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   

15.
添加钠对低镍甲烷化催化剂结构性能的影响   总被引:2,自引:2,他引:2  
胡常伟  吕刚 《分子催化》1992,6(4):263-270
用活性测试、XRD和EXAFS方法研究了一系列含Ni 6wt%、添加不同量Na助剂的γ-Al_2O_3担载Ni甲烷化催化剂的结构性能。结果表明:Ni与Al_2O_3有较强的相互作用。添加不同量的Na助剂能增强或削弱这种作用,从而影响催化剂宏观性能,Na在Al_2O_3上是高度分散的。它的影响是通过改变载体表面性能从而改变Ni的状态及其分布,Ni的分散度和Ni-Al_2O_3相互作用而完成的。适量Na可提高Ni的分散度,优化Ni-Al_2O_3相互作用,从而提高催化剂活性。过量Na则会加强Ni-Al_2O_3相互作用,或者造成NiO自身聚集形成NiO晶相,从而降低Ni利用率,使催化剂活性降低。  相似文献   

16.
采用创新方法制备的ZrO2、TiO2担载氧化铁催化剂在二氧化碳加氢制低碳烃反应中显示出良好的催化活性和产物选择性,由15wt?/ZrO2给出的最佳结果为:CO2转化率为20%,除甲烷以外的低碳烃的选择性接近70%。还考察了金属Fe担载量及催化剂的预还原温度对催化活性的影响,发现催化活性随金属Fe担载量的增加而呈现“双峰”现象,这种现象可能与活性物种(零价铁及配位不饱和的三价或二价铁)在催化剂表面的几何排布有关,而两种催化剂的最佳还原温度分别为723 K(5wt?/ZrO2)和773 K(5wt?/TiO2)。  相似文献   

17.
采用水热法制备了一系列不同Ce/Ni物质的量比的纳米棒CeO_2(x)-NiO催化剂。运用低温N_2吸附-脱附、XRD、TEM、拉曼光谱、H_2-TPR及XPS等技术对催化剂的形貌、结构进行了表征。考察了Ce/Ni物质的量比对CeO_2(x)-NiO催化剂形貌及富氢气氛下CO选择性氧化(CO PROX)反应性能的影响。TEM测试结果表明,调变Ce/Ni物质的量比可制得不同粒径的CeO_2(x)-NiO纳米棒催化剂。H_2-TPR测试结果表明,将NiO掺入CeO_2可提升Ce O_2(x)-NiO催化剂的氧化还原能力。拉曼光谱及XPS测试结果表明,镍含量较低时,CeO_2(x)-NiO催化剂表面活性氧物种及氧空位含量均较多,利于提升其催化性能。CO PROX催化性能测试结果显示,镍含量较低的CeO_2(0.89)-NiO纳米棒催化剂的活性和选择性最好,在170-220℃的反应条件下,CO转化率为100%,CO_2选择性为52%。  相似文献   

18.
采用连续流动微反装置和原位漫反射红外光谱法考察了Ni/SiO2及添加ZrO2助剂的Ni/ZrO2-SiO2催化剂CO甲烷化催化活性和吸附性能。结果表明,在CO体积分数 1%、空速 5000h-1、常压的反应条件下,200℃时Ni/ZrO2-SiO2催化剂可将CO完全转化。而相同反应条件下Ni/SiO2催化剂上CO的转化率仅为35%,直至270℃时方可将CO完全转化。由此可见,ZrO2助剂的添加明显提高了Ni/ZrO2-SiO2催化剂的CO甲烷化催化活性。同时,ZrO2助剂的添加显著提高了Ni/ZrO2-SiO2催化剂对CO的吸附能力,H2存在时可通过在较低温度时形成较多的桥式羰基氢化物来提高Ni/ZrO2-SiO2催化剂的CO甲烷化催化活性;CO甲烷化反应条件下,Ni/SiO2和Ni/ZrO2-SiO2催化剂上C-O键的削弱和断裂是经由羰基氢化物 多氢羰基氢化物的途径,而不是经由C-O键的直接断裂途径。  相似文献   

19.
The Ni-B-Oδ andNi-B-Zr-Oδ catalysts were prepared by the method of chemical reduction, and the deep removal of CO by selective methanation from the reformed fuels was performed over the as-prepared catalysts. The results showed that zirconium strongly influenced the activity and selectivity of the Ni-B-Zr-Oδ catalysts. Over the Ni-B-Oδ catalyst, the highest CO conversion obtained was only 24.32% under the experimental conditions studied. However, over the Ni-B-Zr-Oδ catalysts, the CO methanation conversion was higher than 90% when the temperature was increased to 220 oC. Additionally, it was found that the Ni/B mole ratio also affected the performance of the Ni-B-Zr-Oδ catalysts. With the increase of the Ni/B mole ratio from 1.8 to 2.2, the CO methanation activity of the catalyst was improved. But when the Ni/B mole ratio was higher than 2.2, the performance of the catalyst for CO selective methanation decreased instead. Among all the catalysts, the Ni29B13Zr58Oδ catalyst investigated here exhibited the highest catalytic performance for the CO selective methanation, which was capable of reducing the CO outlet concentration to less than 40 ppm from the feed gases stream in the temperature range of 230–250 oC, while the CO2 conversion was kept below 8% all along. Characterization of the Ni-B-Oδ and Ni-B-Zr-Oδ catalysts was provided by XRD, SEM, DSC, and XPS.  相似文献   

20.
研究了Cu/ZrO2催化剂在乙醇水蒸气重整反应中的催化性能。用常规沉淀法、醇凝胶法制备了ZrO2载体;用浸渍法或共沉淀法制备了Cu/ZrO2催化剂。考察了ZrO2载体的制备方法以及Cu/ZrO2的制备参数对催化剂性能的影响。采用BET、XRD、TEM及XRF等方法对催化剂的比表面积、孔容、晶相、表面形貌以及活性组分等进行了表征。同时,制备并比较了Ni/ZrO2、Cu/10MgO-90ZrO2和Cu/10CaO-90ZrO2催化剂的性能,考察了活性组分Cu、Ni的差异以及ZrO2载体的影响。在Cu/ZrO2催化剂(Cu的质量分数为8%)上,500 ℃~600 ℃乙醇转化率达到98%~100%、H2选择性为2.0~2.6(摩尔比)。 Cu/ZrO2与Ni/ZrO2机械混合有助于H2选择性的提高。在催化剂载体中添加MgO、CaO碱性物质可以使H2选择性提高1.3倍~2.0倍。浸渍法制备的Cu/ZrO2催化剂的性能优于共沉淀法。  相似文献   

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