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1.
甲烷的二氧化碳重整制合成气是近年来甲烷催化转化的一个重要方面,而所用催化剂的积炭问题仍是影响催化剂活性和寿命的主要因素之一.近年来,对催化剂表面的积炭形式有一些报道[1],但对积炭的种类及其与催化剂活性的关系很少有报道.本文从经低温焙烧的Co/Al2...  相似文献   

2.
用蒸发法制备了Ni/Al2O3催化剂及浸渍法制备了Ni/α-Al2O3和Ni/γ-Al2O3催化剂, 并与商品天然气水蒸气重整催化剂Z118Y一起进行了甲烷干重整实验, 考察了各催化剂上表面积炭行为. 通过H2程序升温还原(H2-TPR)、BET(Brunauer-Emmett-Teller)比表面积分析、X射线衍射(XRD)、透射电镜(TEM)、热重-差式扫描量热(TG-DSC)、程序升温氢化(TPH)等表征手段对催化剂表面沉积炭的特性进行了表征. 结果表明, 各催化剂上至少存在三种形式的碳物种: 无定形碳、丝状碳及石墨碳. 由于载体性质不同, 各催化剂上沉积炭的种类及其含量有所差别. Z118Y、Ni/Al2O3及Ni/α-Al2O3催化剂上主要沉积丝状炭, 而Ni/γ-Al2O3催化剂上则主要是石墨碳. Ni/γ-Al2O3催化剂中金属Ni颗粒较小(小于15 nm)、粒径分布范围较窄、分散性较好, 能减少催化剂表面炭的沉积, 有效地抑制丝状碳的生长.  相似文献   

3.
纳米Cr2O3系列催化剂上CO2氧化乙烷脱氢制乙烯反应   总被引:8,自引:0,他引:8  
邓双  李会泉  张懿 《催化学报》2003,24(10):744-750
 采用溶胶-凝胶法和共沸蒸馏法耦合技术制备了纳米Cr2O3催化剂,并采用共沉淀法和共沸蒸馏法耦合技术制备了纳米Cr2O3/Al2O3,Cr2O3/ZrO2和Cr2O3/MgO复合催化剂.应用BET,XRD,XPS,TPR和TEM等物理化学方法对催化剂的结构和物化性质进行了表征,并考察了该系列催化剂上CO2氧化乙烷脱氢制乙烯的反应性能.结果表明,纳米Cr2O3催化剂上乙烷和CO2的转化率均明显高于常规Cr2O3催化剂,但乙烯的选择性低于常规Cr2O3催化剂;纳米复合催化剂中的复合成分显著影响催化剂的催化性能.其中,10%Cr2O3/MgO纳米复合催化剂在温度为973K时,乙烷转化率和乙烯选择性分别可达到61.54%和94.79%.纳米催化剂表面Cr的还原性以及Cr6+/Cr3+比值是影响乙烷转化率和乙烯选择性的重要因素.  相似文献   

4.
采用TG、XRD、SEM、EDAX和脉冲色谱技术,研究了Ni/Al2O3和Ni/ARM催化剂的甲烷脱氢积炭反应特征。结果指出,甲烷脱氢反应的积炭行为与催化剂上镍的分散状态有关。Ni-2催化剂上Ni的分散度小,晶粒大,甲烷脱氢形成的炭丝较长,主要以石墨型炭游离存在:而Ni/ARM催化剂上Ni的分散度大,镍晶粒小,甲烷脱氢形成的炭丝较短,主要覆盖在催化剂活性中心表面。甲烷脱氢主要产生无定型炭和石墨型炭,其中无定型炭可以被CO2部分消除。在催化剂制备时,通过提高镍在催化剂表面的分散度,减小镍的晶粒大小,不仅可以提高催化剂的活性,而且可以提高CO2对积炭的消炭性能。  相似文献   

5.
分别通过浸渍法和共沉淀法制备了不同Ni负载量的Ni/Al2O3催化剂。考察了Ni负载量、制备方法以及反应温度对Ni/Al2O3催化甲烷裂解性能的影响。结果表明,在550℃,浸渍法制备的Ni/Al2O3催化剂,当Ni负载量为20%(质量分数)、Ni金属平均粒径为11.25 nm时,具有最佳的甲烷催化裂解效果,其每摩尔Ni的氢气产量和每克Ni碳产量分别为164 mol和15.30 g。催化剂制备方法对Ni/Al2O3甲烷催化裂解反应有显著影响,相同Ni负载量共沉淀法制备的Ni/Al2O3甲烷催化裂解总体效果要好于浸渍法制备的Ni/Al2O3,而且反应过程中生成的碳纤维较长,管径也较均一。550℃时,共沉淀法制备的Ni负载量为41.2%(质量分数)的Ni/Al2O3催化剂在反应至350 min时,仍保持着30%以上的转化率。  相似文献   

6.
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   

7.
The 10%Ni/Al2O3 catalyst for partial oxidation of methane was treated by DBD (dielectric barrier discharge) plasma in a continuous system under atmospheric pressure and room temperature by flowing He. It was found that 10%Ni/Al2O3 catalyst treated by plasma presents a higher catalytic activity and an enhanced stability than the catalysts prepared without plasma treatment. The methane conversion over the catalyst treated by plasma is 3%-5% higher than the catalysts untreated by plasma. Moreover,the enhanced dispersion of the catalyst can be achieved by plasma treatment, which can improve the interaction between active species and supports, catalytic activity and the resistance to carbon deposition.  相似文献   

8.
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   

9.
载体对合成气制甲烷镍基催化剂性能的影响   总被引:1,自引:0,他引:1  
考察了A12O3-1,Al2O3-2和SiO2负载的Ni基催化剂上合成气制甲烷的反应活性和稳定性.结果表明,Ni/Al2O3-2和Ni/SiO2催化剂表现出较高的催化活性和稳定性,而Ni/Al2O3-1催化剂稳定性极差.采用X射线衍射、透射电镜、程序升温还原、N2吸附-脱附和热重分析等技术对催化剂进行了表征.结果显示,...  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.
采用等体积浸渍法制备了一系列不同Co/Mo原子比的碳纳米管(CNT)负载Co Mo催化剂。将该系列催化剂用于孤岛减压渣油加氢裂化反应,评价其催化效果,并在相同反应条件下与 γAl2O3负载Co-Mo催化剂的催化性能进行比较。结果表明,Co-Mo/CNT催化剂的催化效果略低于Co-Mo/γAl2O3催化剂。Co/Mo原子比对Co-Mo/CNT催化剂的催化效果有较大的影响。与相同载体的催化剂相比,当Co/Mo原子比为0.50时,Co-Mo/CNT催化剂具有最佳的催化效果,而Co-Mo/γAl2O3催化剂在Co/Mo原子比为0.35时具有最佳的催化效果。  相似文献   

12.
担载型钌催化剂吸附CO性能的原位红外研究   总被引:1,自引:0,他引:1  
用原位红外研究了CO的吸附与脱附,CO/H2的共吸附及反应,考察了焙烧温度对Ru/Al2O3及Ru/SiO2催化剂的影响,结果表明,经不同温度焙烧的催化剂样品,其吸附性能有很大差别。随着焙烧温度的升高,金属-载体相互作用增强,导致CO吸附量减少。Ru/Al2O3吸附的CO较稳定,而Ru/SiO2吸附的CO在高温易脱附。各不同CO吸会态间、多重态更易发生反应。在未焙烧的Ru/SiO2低CO/H2反应  相似文献   

13.
Dehydrogenation of ethylbenzene (EB) to styrene (ST) in the presence of CO2, in which EB dehydrogenation is coupled with the reverse water-gas shift (RWGS), was investigated extensively through both theoretical analysis and experimental characterization. The reaction coupling proved to be superior to the single dehydrogenation in several respects. Thermodynamic analysis suggests that equilibrium conversion of EB can be improved greatly by reaction coupling due to the simultaneous elimination of the hydrogen produced from dehydrogenation. Catalytic tests proved that iron and vanadium supported on activated carbon or Al2O3 with certain promoters are potential catalysts for this coupling process. The catalysts of iron and vanadium are different in the reaction mechanism, although ST yield is always associated with CO2 conversion over various catalysts. The two-step pathway plays an important role in the coupling process over Fe/Al2O3, while the one-step pathway dominates the reaction over V/Al2O3. Coke deposition and deep reduction of active components are the major causes of catalyst deactivation. CO2 can alleviate the catalyst deactivation effectively through preserving the active species at high valence in the coupling process, though it can not suppress the coke deposition.  相似文献   

14.
IntroductionSynthesisgas(HZ CO)isproducedfrommethanemoshybysteamrefonningwhichsuffersfromlimitationssuchasveryhighenergyrequirements,complicatedequipmentandinstallations,highHZ/COproductratioandpoorselectivityforcarbonmonoxide.Recently,manyresearchershave…  相似文献   

15.
由铜基催化剂催化甲醇水蒸汽重整制氢是有效解决车载燃料电池等制氢需求的潜在途径.但传统铜基催化剂对该反应的低温催化活性及制氢选择性均不理想.近年来碳纳米管及活性碳纤维等因具有独特的纳米孔结构、高比表面积和优异的吸附性能作为潜在的新型催化材料而备受关注.  相似文献   

16.
以介孔树脂材料FDU-14和介孔碳材料CMK-3为载体制备了两种负载型铂催化剂, 用N2气吸附、X射线衍射及CO化学吸附等手段对这两种催化剂进行了表征, 并将这两种不同的负载型铂催化剂在丙酮酸乙酯不对称氢化反应中的催化性能及其铂流失率与商品化Pt/Al2O3催化剂进行了比较. 研究结果表明, 尽管Pt/Al2O3催化剂的初始活性和光学选择性均较高, 然而相同反应条件下乙酸溶剂中Pt/FDU-14和Pt/CMK-3催化剂的铂流失率比Pt/Al2O3催化剂的低. 通过对催化剂进行CO吸附原位傅里叶变换红外漫反射光谱(DRIFTS)表征, 从载体的不同表面电子性质角度解释了不同载体负载的铂催化剂在丙酮酸乙酯不对称氢化反应中的活性和铂流失率的差异.  相似文献   

17.
考察了Rh/Al2O3,Rh/SiO2和Rh/CeO2催化剂上金属-载体间相互作用对CH4/CO2重整反应抗积炭性能的影响,并与反应前后催化剂的程序升温还原和程序升温氧化(TPO)测试结果相关联.实验发现,Rh与Al2O3和SiO2载体间的相互作用越强,催化剂还原后Rh的分散度越高,晶粒越小,高分散的Rh表面生成的碳物种CHx越多,其作为活泼的反应中间体越易与CO2反应生成CO和H2.而游离态的Rh还原后晶粒较大,生成的碳物种与CO2反应能力较低,从而导致催化剂失活.TPO和CO2脉冲实验结果表明,反应过程中Rh/CeO2催化剂上反应生成的CHx物种比Rh/Al2O3和Rh/SiO2上的CHx物种更活泼.同时由于Rh-CeO2间独特的相互作用,部分CeO2还原后生成CeO2-x和氧空位,促进CO2分子的活化解离,导致生成的表面氧容易与CHx反应,从而抑制催化剂积炭.  相似文献   

18.
Styrene (STY) is now produced industrially in fairly large quantities by the dehydrogenation of ethylbenzene (EB) using promoted iron oxide catalyst with superheated steam.In this case, small amount of carbon dioxide formed as a by-product was known to inhibit the catalytic activity of commercial catalyst. Recently, there have been some reports which carbon dioxide showed positive effects to promote catalytic activities on the reaction over several catalysts.In this study, we attempted to combine the dehydrogenation of EB to STY with the carbon dioxide shift-reaction. The combine reaction (EB + CO2 → STY + H2O + CO) can be considered as one of the ways of using CO2 resources and can yield simultaneously STY and Carbon oxide.Alumina oxide catalysts such as Al2O3, Na2O/Al2O3 and K2O/Al2O3 were prepared by the usual impregnation method with an aqueous solution of NaNO3 and KNO3, and then calcined at 650℃ for 5 h in a stream of air. The reaction condition is 600℃, flow of CO2 38ml/mon and space velocity (EB) 1.28h-1.  相似文献   

19.
在加氢精制和许多其它催化过程中,Mo,W是主要的活性组分,Co,Ni通常作为助剂,有关Co-Mo体系的研究文献报导很多~[1.2], 但由于钨较难还原和硫化,关于  相似文献   

20.
A hierarchical metal-free catalyst consisting of nitrogen-doped carbon nanotubes decorated onto a silicon carbide (N-CNTs/SiC) macroscopic host structure was prepared. The influence of N-CNTs incorporation on the physical properties of the support was evaluated using different characterization techniques. The catalyst was tested as a metal-free catalyst in the selective oxidation of H2S and steam-free dehydrogenation of ethylbenzene. The N-CNTs/SiC catalyst exhibited extremely good desulfurization performance compared to a Fe2O3/SiC catalyst under less conducive reaction conditions such as low temperature, high space velocity, and a low O2-to-H2S molar ratio. For the dehy-drogenation of ethylbenzene, a higher dehydrogenation activity was obtained with the N-CNTs/SiC catalyst compared to a commercial K-Fe/Al2O3 catalyst. The N-CNTs/SiC catalyst also displayed good stability as a function of time on stream for both reactions, which was attributed to the strong anchoring of the nitrogen dopant in the carbon matrix. The extrudate shape of the SiC support allowed the direct macroscopic shaping of the catalyst for use in a conventional fixed-bed reactor without the problems of catalyst handling, transportation, and pressure drop across the catalyst bed that are encountered with nanoscopic carbon-based catalysts.  相似文献   

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