首页 | 官方网站   微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 281 毫秒
1.
通过等体积浸渍法制备单贵金属Pt/γ-Al_2O_3和双金属Pt-Ce/γ-Al_2O_3催化剂,考察Ce对催化剂活性的影响,确定催化剂最优配比。结果表明,当Pt的负载量为质量分数0.5%时,Pt/γ-Al_2O_3催化活性最高;当Pt的负载量为质量分数0.2%,Ce的负载量为质量分数1.0%时,Pt-Ce/γ-Al_2O_3催化剂的催化活性最高。Pt-Ce/γ-Al_2O_3催化剂的甲苯转化率高于Pt/γ-Al_2O_3催化剂。随着Pt负载量增大,催化剂孔容、孔径减小。粉体式催化剂性能优于整体式催化剂,但差别不大;Ce的添加有助于催化剂活性的提升。  相似文献   

2.
通过制备高纯度的前驱体湃铝石获得了η-Al2O3材料,采用XRD验证了η-Al2O3与γ-Al2O3在晶相结构上的差异,比较了两者的表面形貌、织构及酸碱性能,结果显示,η-Al2O3与γ-Al2O3的比表面积相当,但η-Al2O3具有更弱的弱碱位和较少的强碱位,并拥有丰富的中等强度酸性位。将η-Al2O3与γ-Al2O3作为催化剂应用于CS2水解反应,结果表明,在(200~450) ℃测试温度范围内,η-Al2O3催化剂对CS2的水解活性始终优于γ-Al2O3,两种催化剂上CS2反应的浓度效应也明显不同,推测与它们的酸碱性质影响了对CS2的吸附能力有关,导致两者催化CS2水解反应遵循了不同的机制。  相似文献   

3.
刘思乐  王凯  陶洋  单译  李德豹 《工业催化》2017,25(10):70-74
以γ-Al2O3为载体,采用等体积分步浸渍法制备了以Ni为活性组分,La、Ce、Fe、Cr、Co为助剂的催化剂M/γ-Al2O3,在固定床管式反应器中研究了M/γ-Al2O3催化剂的性能,考察了反应温度、水碳比和空速对氢产率的影响,并对催化剂进行XRD、SEM和BET表征。结果表明,NiLaCeFeCrCo/γ-Al2O3催化剂具有较好的催化性能,在反应温度700 ℃、水碳物质的量比10和空速6 min-1的条件下,氢产率达到27.335 mol·mol-1,并在300 min内表现出较好的活性,平均氢产率为21.966 mol·mol-1。  相似文献   

4.
李国峰 《工业催化》1992,28(10):34-36
采用等体积浸渍法制备加氢催化剂NiMo/γ-Al2O3,在悬浮床上考察不同的制备条件下NiMo/γ-Al2O3对萘加氢生成四氢萘的影响。结果表明,催化剂的制备条件对加氢活性有显著的影响,NiMo/γ-Al2O3催化剂的最佳制备条件为共浸渍法负载金属组分Ni和Mo,在500 ℃的温度下焙烧4 h。此条件下制备的催化剂上四氢萘的选择性高达95.2%。  相似文献   

5.
采用铝箔盐酸回流-油柱成型法制备了不同Sn掺杂量的Sn(x)-θ-Al2O3载体,并采用真空浸渍法制备了Pt/Sn(x)-θ-Al2O3催化剂。对制备的催化剂进行XRD、N2物理吸附-脱附、NH3-TPD、H2-TPR和TG-DTA表征,研究了在载体中掺入助剂Sn对Pt/Sn(x)-θ-Al2O3催化剂结构及丙烷脱氢催化反应性能的影响。结果表明,在载体制备过程中掺入Sn,可以提高催化剂反应活性和产物选择性,当Sn掺杂质量分数为1.0%时,催化剂具有最优的丙烷脱氢反应性能,15 h的平均丙烷转化率为32.4%,平均丙烯选择性为95.5%。  相似文献   

6.
利用等体积浸渍法制备K2CO3/γ-A12O3负载型固体碱催化剂,应用于棉籽油和甲醇酯交换反应制备生物柴油。对催化剂使用前的保存条件、水分、重复使用性能、游离脂肪酸影响以及失活和再生进行了分析。结果表明,固体催化剂K2CO3/γ-Al2O3具有较好的抗水性,酸度对催化剂影响明显,重复使用4次未经活化的催化剂,催化活性明显降低,催化剂应密封保存。K2CO3/γ-A12O3负载型固体碱催化剂经济实惠且催化效果良好。  相似文献   

7.
采用等体积共浸渍法和分步浸渍法制备Pt-Sn/γ-Al2O3催化剂,并在固定床反应器上进行正丁烷脱氢实验研究。结果表明,与共浸渍法相比,分步浸渍法制备的催化剂表现出更高的催化活性。采用等体积浸渍法制备催化剂时,活性组分与载体之间会发生竞争吸附作用,这会影响活性金属组分在载体表面的分散度,进而影响催化剂活性。  相似文献   

8.
采用液相共沉淀法制备了TiO2-γ-Al2O3复合催化剂,在其最佳合成条件下,比较了太阳光/TiO2-γ-Al2O3与UV/TiO2处理垃圾渗滤液的性能。结果表明,当Ti(SO42与Al2(SO43·18H2O摩尔配比为1:2、聚乙二醇2000投加质量分数为1.25%、焙烧温度为650℃时,TiO2-γ-Al2O3的催化活性最强。当催化剂投加量与垃圾渗滤液COD质量比为1.75、反应时间为90 min、渗滤液pH为3时,太阳光/TiO2-γ-Al2O3对COD、NH4+-N的去除率几乎达到最高,分别为81.97%和54.95%,...  相似文献   

9.
作为合成气制乙二醇关键步骤之一,CO与亚硝酸甲酯合成草酸二甲酯备受关注。综述了近年来CO气相偶联合成草酸二甲酯Pd/α-Al2O3催化剂失活与再利用研究进展,探讨催化剂再利用工艺存在的问题,指出应根据在工业应用中出现的问题对Pd/α-Al2O3催化剂进行失活研究,在此基础上开发针对性的再生工艺;钯催化剂回收方面萃取法和吸附法逐渐成为研究重点,高效、低耗、短流程绿色工艺的开发是失活钯催化剂再利用的发展方向。  相似文献   

10.
FCC烟气中的SO2和NO是主要的大气污染物,选择性催化还原是一种很好的脱除方法。采用浸渍法制备了CuO不同负载量的CuO/γ-Al2O3系列催化剂,通过XRD和H2-TPR对催化剂进行表征,使用常压固定床流动法微型催化反应装置考察催化剂在以CO为还原气时,同时脱硫脱硝的催化活性。结果表明,CuO作为活性组分很好地分散在γ-Al2O3载体上,不破坏其结构;不同CuO负载量的CuO/γ-Al2O3催化剂具有良好的脱硫脱硝活性,脱硝率超过95.00%,脱硫率最低也能达到80.00%,CuO负载质量分数为10%的CuO/γ-Al2O3催化剂有最佳的脱硫脱硝活性;以CO作还原剂,CuO/γ-Al2O3系列催化剂的活性温度较高,脱硝率在700 ℃达到最大,为97.90%,脱硫率在760 ℃达到最大,为93.34%。CuO负载质量分数为10%的CuO/γ-Al2O3催化剂可作为一种较好的高温脱硫脱硝催化剂。  相似文献   

11.
Mn effect and characterization on γ-Al2O3-, -Al2O3- and SiO2-supported Ru catalysts were investigated for Fischer–Tropsch synthesis under pressurized conditions. In the slurry phase Fischer–Tropsch reaction, γ-Al2O3 catalysts showed higher performance on CO conversion and C5+ selectivity than -Al2O3 and SiO2 catalysts. Moreover, Ru/Mn/γ-Al2O3 exhibited high resistance to catalyst deactivation and other catalysts were deactivated during the reaction. From characterization results on XRD, TPR, TEM, XPS and pore distribution, Ru particles were clearly observed over the catalysts, and γ-Al2O3 catalysts showed a moderate pore and particle size such as 8 nm, where -Al2O3 and SiO2 showed highly dispersed ruthenium particles. The addition of Mn to γ-Al2O3 enhanced the removal of chloride from RuCl3, which can lead to the formation of metallic Ru with moderate particle size, which would be an active site for Fischer–Tropsch reaction. Concomitantly, manganese chloride is formed. These schemes can be assigned to the stable nature of Ru/Mn/γ-Al2O3 catalyst.  相似文献   

12.
Ethanol steam reforming was studied over Ni/Al2O3 catalysts. The effect of support (- and γ-Al2O3), metal loading and a comparison between conventional H2 reduction with an activation method employing a CH4/O2 mixture was investigated. The properties of catalysts were studied by N2 physisorption, X-ray diffraction (XRD) and temperature programmed reduction (TPR). After activity tests, the catalysts were analyzed by scanning electron microscopy (SEM) and thermogravimetric analysis (TG/DTA). Ni supported on γ-Al2O3 was more active for H2 production than the catalyst supported on -Al2O3. Metal loading did not affect the catalytic performance. The alternative activation method with CH4/O2 mixture affected differently the activity and stability of the Ni/γ-Al2O3 and the Ni/-Al2O3 catalyst. This activation method increased significantly the stability of Ni/-Al2O3 compared to H2 reduction. SEM and TG/DTA analysis indicate the formation of filamentous carbon during the CH4/O2 activation step, which is associated with the increasing catalyst activity and stability. The effect of temperature on the type of carbon formed was investigated; indicating that filamentous coke increased activity while encapsulating coke promoted deactivation. A discussion about carbon formation and the influence on the activity is presented.  相似文献   

13.
Ni catalysts supported on γ-Al2O3, CeO2 and CeO2–Al2O3 systems were tested for catalytic CO2 reforming of methane into synthesis gas. Ni/CeO2–Al2O3 catalysts showed much better catalytic performance than either CeO2- or γ-Al2O3-supported Ni catalysts. CeO2 as a support for Ni catalysts produced a strong metal–support interaction (SMSI), which reduced the catalytic activity and carbon deposition. However, CeO2 had positive effect on catalytic activity, stability, and carbon suppression when used as a promoter in Ni/γ-Al2O3 catalysts for this reaction. A weight loading of 1–5 wt% CeO2 was found to be the optimum. Ni catalysts with CeO2 promoters reduced the chemical interaction between nickel and support, resulting in an increase in reducibility and stronger dispersion of nickel. The stability and less coking on CeO2-promoted catalysts are attributed to the oxidative properties of CeO2.  相似文献   

14.
Two types of NiO/γ-Al2O3 catalysts prepared by the impregnation and the sol–gel method were used for the partial oxidation of methane to syngas at 850°C (GHSV1.8×105 lkg−1 h−1). The effects of the carbon deposition, the loss and sintering of nickel and the phase transformation of γ-Al2O3 support on the catalytic performance during 80 h POM reaction were investigated with a series of characterization such as XRD, BET, AAS, TG, and XPS. The results indicated that the carbon deposition and the loss and sintering of nickel could not cause the serious decrease of catalytic performance over NiO/γ-Al2O3 catalyst during the short-time reaction. However, the slow process of the support γ-Al2O3 phase transforming into -Al2O3 could slowly decrease the performance of NiO/γ-Al2O3 catalysts. Aimed at the reasons of the deactivation, an improved catalyst was obtained by the complexing agent-assisted sol–gel method.  相似文献   

15.
Lanthanum-doped Pd/γ-Al2O3 and Pd/γ-Al2O3 membranes were prepared by sol-gel methods. The thermal stability of the unsupported Pd/γ-Al2O3 and La/Pd/γ-Al2O3 membranes was investigated with BET (including average pore size, pore volume and BET surface area), XRD, and DTA techniques. The average pore size of the Pd/γ-Al2O3 membranes increased sharply after sintering at temperatures higher than 1000°C. Addition of 3 mol% lanthanum can raise the temperature of the γ-Al2O3 to-Al2O3 phase transformation significantly. This improves the thermal stability of the Pd/γ-Al2O3 catalytic membranes.  相似文献   

16.
Dispersing La2O3 on δ- or γ-Al2O3 significantly enhances the rate of NO reduction by CH4 in 1% O2, compared to unsupported La2O3. Typically, no bend-over in activity occurs between 500° and 700°C, and the rate at 700°C is 60% higher than that with a Co/ZSM-5 catalyst. The final activity was dependent upon the La2O3 precursor used, the pretreatment, and the La2O3 loading. The most active family of catalysts consisted of La2O3 on γ-Al2O3 prepared with lanthanum acetate and calcined at 750°C for 10 h. A maximum in rate (mol/s/g) and specific activity (mol/s/m2) occurred between the addition of one and two theoretical monolayers of La2O3 on the γ-Al2O3 surface. The best catalyst, 40% La2O3/γ-Al2O3, had a turnover frequency at 700°C of 0.05 s−1, based on NO chemisorption at 25°C, which was 15 times higher than that for Co/ZSM-5. These La2O3/Al2O3 catalysts exhibited stable activity under high conversion conditions as well as high CH4 selectivity (CH4 + NO vs. CH4 + O2). The addition of Sr to a 20% La2O3/γ-Al2O3 sample increased activity, and a maximum rate enhancement of 45% was obtained at a SrO loading of 5%. In contrast, addition of SO=4 to the latter Sr-promoted La2O3/Al2O3 catalyst decreased activity although sulfate increased the activity of Sr-promoted La2O3. Dispersing La2O3 on SiO2 produced catalysts with extremely low specific activities, and rates were even lower than with pure La2O3. This is presumably due to water sensitivity and silicate formation. The La2O3/Al2O3 catalysts are anticipated to show sufficient hydrothermal stability to allow their use in certain high-temperature applications.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司    京ICP备09084417号-23

京公网安备 11010802026262号