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1.
我们研究了4种负载型Pt催化剂(1Pt/NiO、1Pt/FeOx、1Pt/Co3O4和Pt/CeO2)上不同反应条件下CO氧化活性及抗H2O和CO2性能.发现反应气氛中CO2的加入与CO形成了竞争吸附,并在催化剂表面形成了碳酸盐物种堵塞了活性位,从而导致催化剂失活.反应气氛中H2O的加入对1Pt/CeO2催化剂的活性有所抑制,但对1Pt/FeOx、1Pt/NiO和1Pt/Co3O4催化剂的活性却有促进作用.在1Pt/FeOx和1Pt/CeO2催化剂上的分步反应实验和动力学研究表明,尽管H2O的加入在两种催化剂上均与CO形成了竞争吸附,但在1Pt/FeOx催化剂上H2O在载体表面解离形成的羟基更易与CO反应,开辟了新的反应途径,从而提高了反应性能.此外,H2O的加入能有效分解该催化剂上的碳酸盐物种,从而保持了其稳定性.  相似文献   

2.
n-Hexane andn-nonane were reacted on Pt black, 6% Pt/SiO2, 0.8% Pt/KL zeolite and a 0.6% industrial Pt/Al2O3 catalyst. Selectivities were compared at ∼10% conversion. After reaction, the catalyst was exposed to H2 and the hydrocarbons leaving the catalysts were analyzed. The amount of hydrocarbons left the catalysts decreased in the sequence Pt black>Pt/SiO2>Pt/KL>Pt/Al2O3. The composition of removed hydrocarbons gave important—although indirect—information on the possible state of “hydrocarbonaceous deposits” during catalysis.  相似文献   

3.
The Pt/Al2O3, Sn/Al2O3catalysts were prepared by the single sol-gel method. The two-stage Sn/Al2O3and Pt/Al2O3catalyst in series for NO reduction with propene were investigated. The coexistance of water vapor enhanced the activity at medium temperature of 300-400oC, and the NO conversion was above 50% at 225 to 500oC even in the presence of water vapor and SO2. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

4.
This study investigated the selective catalytic reduction (SCR) of nitrogen oxides (NOx) with hydrocarbon in the presence of excess oxygen using various composition ratios of Pt/Al2O3, Rh/Al2O3 catalyst mixtures. The composition ratios were 1:1, 1:2, 2:1, 1:3 and 3:1 of 1 wt% Pt/Al2O3 and Rh/Al2O3, which are known to exhibit efficient NOx reduction at low and high temperatures among the noble metal catalysts. Experiments conducted on a single reductant revealed that more efficient NOx conversion could be obtained when Pt/Al2O3 and Rh/Al2O3 were mixed at a ratio of 3:1, rather than 1:1 or 1:3. In a single reductant condition, C3H6 800 ppm (2400 ppmC1) and 400 ppm (1200 ppmC1) exhibited 50% and 38% NOx conversion efficiency at 200°C, respectively. However, NOx conversion efficiency gradually decreased when temperatures were increased above 250°C. With regard to Pt/Al2O3 and Rh/Al2O3 ratio, higher ratios of Rh/Al2O3 activated this Pt+Rh/Al2O3 catalyst in the high temperature range.  相似文献   

5.
CeO2 promoted palladium catalysts supported on Al2O3 were prepared using the impregnation (IM) and the deposition-precipitation (DP) methods. The activities and sulfur tolerance of the catalysts for hydrodesulfurization (HDS) were detected with thiophene HDS as probe reaction. H2 adsorption, XRD, FTIR, NH3-TPD, XPS were used to characterize the catalysts. The Pd-CeO2/Al2O3 (IM) catalyst was highly active for the HDS reaction, and it had much stronger sulfur tolerance than the Pd/Al2O3 catalyst. Pd-CeO2/Al2O3 (DP) showed excellent sulfur tolerance while its initial activity decreased. It was observed that with the chlorine bridge, the interfacial structure of Pd-Cl−1-Ce3+ was responsible for the high activity of the Pd-CeO2/Al2O3 (IM) catalyst, at the same time the interaction of Pd with Ce was weakened by Cl−1 ions. The enhanced sulfur tolerance over the Pd-CeO2/Al2O3 (IM) catalyst was attributed to the weakened Pd-S bond caused by the competitive adsorption of H2S on Ce3+ ions. As to the Pd-CeO2/Al2O3 (DP) catalyst, a strong interaction of Pd with Ce put Pd at an electron-deficient state, the creation of sulfided palladium was therefore inhibited.  相似文献   

6.
Recucibility of Mo species in Pt/MoO3 and PtMo/Al2O3 has been investigated by temperature-programmed reduction (TPR), temperature-programmed desorption of hydrogen (H2-TPD) and temperature programmed electronic conductivity (TPEC) techniques. In Pt/MoO3 at H2 atmosphere, it was found by TPEC and TPR that, a slight amount of Pt could activate the transfer of the species and H atoms between H2 and MoO3, and thus accelerate the reduction of MoO3. In PtMo/Al2O3, TPR and H2-TPD revealed that the reduction of surface Mo species could also be facilitated by Pt. Two kinds of hydrogen molybdenum species were proposed on the surface of the catalyst after prereduction.  相似文献   

7.
In the current paper, dry (CO2)-reforming of glycerol, a new reforming route, was carried out over alumina (Al2O3)-supported, non-promoted and lanthanum-promoted nickel (Ni) catalysts. Both sets of catalysts were synthesized via a wet co-impregnation procedure. Physicochemical characterization of the catalysts showed that the promoted catalyst possessed smaller metal crystallite size, hence higher metal dispersion compared to the virgin Ni/Al2O3 catalyst. This was also corroborated by the surface images captured by the FESEM analysis. From temperature-programmed calcination analysis, the derivative weight profiles revealed two peaks, which represent a water elimination peak at a temperature range of 373 to 473 K followed by nickel nitrate decomposition from 473 to 573 K. In addition, BET surface area measurements gave 85.0 m2·g−1 for the non-promoted Ni catalyst, whilst the promoted catalysts showed an average of 1% to 6% improvement depending on the La loadings. Significantly, reaction studies at 873 K showed that glycerol dry reforming successfully produced H2. The 2%La-Ni/Al2O3 catalyst, which possessed the largest BET surface area, gave an optimum H2 generation (9.70%) at a glycerol conversion of 24.5%.  相似文献   

8.
The activities of monometallic Pt-, Ru-, and Rh-containing catalysts supported on Al2O3, Al2O3—F, SiO2, WO3/ZrO2, and La2Î3/ZrO2, in cyclohexane ring opening to form n-hexane were studied. The most active catalyst is Rh/Al2O3. Cyclohexane hydrogenolysis to n-hexane also occurs over the Pt/Al;>2O3 and Pt/La2Î3/ZrO2 catalysts. Ring opening over the Ru catalysts proceeds at significantly lower temperatures (210—230 °C) than over the Pt and Rh catalysts (350—400 °C), but the ruthenium systems are less selective for n-hexane formation than Rh/Al2O3 catalysts. The effects of acid-basic properties of the support and the reaction conditions on the activities of the catalytic systems in cyclohexane ring opening was studied.  相似文献   

9.
采用恒pH法和非恒pH法制备了Al2O3掺杂的Pt/WO3/ZrO2催化剂,并用N2吸附-脱附、X射线衍射、紫外-可见漫反射、CO化学吸附、X射线光电子能谱、27Al魔角旋转核磁共振和吡啶吸附红外等技术对催化剂进行了表征.结果表明,相比于非恒pH法制备的催化剂,恒pH法制备的催化剂具有较高的比表面积和Pt分散度,在H2气氛中产生更多的B酸位,从而表现出更高的催化正庚烷临氢异构化反应活性; 在200℃和质量空速0.9h-1的反应条件下,正庚烷转化率达70.0%,明显高于非恒pH法制备的催化剂(43.5%).  相似文献   

10.
The nature of the surface species on Pt/Al2O3 for the SCR of NO by C3H6 under excess oxygen has been investigated. An experiment consisting of three steps shows that there are at least three types of surface species occurring on the catalyst surface. However, a reactivity test and an investigation of surface species after adding a second metal (Fe, Sn, Co, Cr or W) to Pt/Al2O3 indicate that only (ClHmOn)HT species play an important role in NO reduction at a low operating temperature. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

11.
Supported metal nanoparticle catalysts are studied for alkylation of 2-methylquinoline with benzyl alcohol under additive-free conditions in N2 atmosphere. Among various metal-loaded Al2O3 catalysts and supported Pt catalysts, Pt metal nanocluster loaded-Al2O3 pre-reduced in H2 at 500 °C shows highest yield (82%) of the product (2-phenethyl-quinoline). The catalyst is reusable, shows higher turnover number than a previous homogeneous catalyst, and shows good to moderate yield for alkylation of 2-methylquinoline with various alcohols. The reaction is driven by the borrowing-hydrogen pathway, in which aldehyde formed by dehydrogenation of alcohol undergoes aldol condensation with 2-methylquinoline to give the alkene intermediate which is finally hydrogenated by Pt-H species.  相似文献   

12.
Summary Transformation of n-hexane over Al2O3and SiO2supported Pt, Pt+Ga and Ir+Pt+Ga catalysts was studied in a continuous-flow reactor operated under slug-pulse mode at 520°C. Bimetallic catalysts were prepared by introducing first Ga(OEt)3and then diallylplatinum as precursor compounds. Iridium was then introduced viadecomposition of Ir4(CO)12adsorbed onto Pt+Ga catalysts. The addition of Ga to Pt/SiO2catalyst decreased hydrogenation, aromatization and hydrogenolysis selectivity. Over Pt/Al2O3catalyst Ga increased hydrogenolysis selectivity and decreased isomerization and C5-cyclization. The main effect of Ir was to increase hydrogenolysis selectivity and the stability of catalysts.</o:p>  相似文献   

13.
以掺杂不同含量ZnO的Zr0.5Al0.5O1.75为载体,制备了系列1.5%Pd催化剂.在模拟稀燃天然气汽车尾气条件下,测试了催化剂的活性和抗水性,并用N2吸附-脱附、X射线衍射、H2程序升温还原和X射线光电子能谱等手段对催化剂进行了系统表征.研究结果表明,ZnO的添加及添加量对催化剂的活性和抗H2O性有明显影响,其中以ZnO添加量为15%时制备的复合氧化物为载体的催化剂活性最佳.当模拟尾气中不含H2O时,该催化剂对甲烷的起燃温度(T50)和完全转化温度(T90)分别为278和314℃;在含H2O时,该催化剂的T50和T90分别为342和371℃.  相似文献   

14.
The activities of metal oxide CuO, SnO2, CoO, Ag2O, ZnO or noble metal Pt, Pd, Rh-doped In2O3/Al2O3 catalysts for selective catalytic reduction of NO by propene were investigated. The temperature windows for NO reduction over noble metal-doped In2O3/Al2O3 catalysts were shifted and broaden slightly compared with single component catalyst alone. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

15.
Thermal desorption of H2 from the surface of Pd/support and Pd-Ag/support (support = Al2O3, SiO2) catalysts has been investigated. Two wide desorption peaks can be observed for the 5% Pd/support catalyst. The presence of these peaks in the thermogram indicates that several adsorption states exist, which is the result of occurrance of different adsorption centers of specific bond strengths for hydrogen. The addition of silver to the palladium catalysts causes a considerable decrease in the size of the high temperature desorption peak. It is also worth noting that the temperature of the maximum of the desorption rate remains practically constant for all bimetallic catalysts studied. This means that the activation energy of the hydrogen desorption process does not change after the introduction of silver to the palladium catalyst.  相似文献   

16.
刘爽  吴晓东  林雨  李敏  翁端 《催化学报》2014,35(3):407-415
通过在Ce0.6Zr0.4O2载体上浸渍Pt(NO32制得Pt/Ce0.6Zr0.4O2催化剂,该催化剂在松散接触条件下,于NO+O2或O2气氛中均表现出比Pt/Al2O3更好的碳烟氧化性能. 进一步研究表明,Pt/Ce0.6Zr0.4O2催化剂中的Pt 与Ce0.6Zr0.4O2存在相互作用,使得催化剂在一定温度范围内对活性氧的利用率大为提高,从而促进了气氛中NO↔NO2的循环,乃至碳烟与NO2的反应和碳烟表面含氧中间物种的生成;更重要的是,这部分活性氧本身可加速含氧中间物种的分解. 因此,在NO + O2的气氛中,Pt/Ce0.6Zr0.4O2催化剂的碳烟起燃温度比Pt/Al2O3降低了34 ℃.  相似文献   

17.
宋华  董鹏飞  张旭 《物理化学学报》2010,26(8):2229-2234
通过向SO2-4 /ZrO2催化剂中同时引入适量的Pt和Al2O3, 制备出了具有较高催化性能和稳定性的Pt-SO2-4 /ZrO2-Al2O3型固体超强酸催化剂. 以正戊烷异构化反应为探针, 考察了Al含量对催化剂性能的影响; 并采用X射线衍射(XRD)、比表面积测定(BET)、红外(IR)光谱、程序升温还原(TPR)、热重-差热分析(TG-DTA)和氨-程序升温脱附(NH3-TPD)手段对催化剂进行了表征. 结果表明, Al能够提高ZrO2的晶化温度, 抑制硫的分解, 增加催化剂的比表面积, 增强硫氧键的结合, 提高催化剂的还原性能, 增加催化剂的酸强度和酸总量. 当Al2O3含量(质量分数, w)为5.0%时, Pt-SO2-4 /ZrO2-Al2O3固体超强酸催化剂的催化活性最好, 在100 h内异戊烷收率可稳定在52.0%以上, 选择性在98.2%以上.  相似文献   

18.
Pt‐Co/Al2O2 catalyst has been studied for CO2 reforming of CH4 to synthesis gas. It was found that the catalytic performance of me catalyst was sensitive to calcination temperature. When Co/Al2O3 was calcined at 1473 K prior to adding a small amount of Pt to it, the resulting bimetallic catalyst showed high activity, optimal stability and excellent resistance to carbon deposition, which was more effective to the reaction than Co/Al2O3 and Pt/Al2O3 catalysts. At lower metal loading, catalyst activity decreased in the following order: Pt‐Co/ Al2O3 > Pt/Al2O3 > Co/Al2O3. With 9% Co, the Co/Al2O3 calcined at 923 K was also active for CO2 reforming of CH4, however, its carbon formation was much more fast man that of the Pt‐Co/Al2O3 catalyst. The XRD results indicated that Pt species well dispersed over the bimetallic catalyst. Its high dispersion was related to the presence of CoAl2O4, formed during calcining of Co/Al2O3 at high temperature before Pt addition. Promoted by Pt, Co/Al2O4 in the catalyst could be reduced partially even at 923 K, the temperature of pre‐reduction for the reaction, confirmed by TPR. Based on these results, it was considered that the zerovalent platinum with high dispersion over the catalyst surface and the zerovalent cobalt resulting from Co/Al2O4 reduction are responsible for high activity of the Pt‐Co/Al2O3 catalyst, and the remain Co/Al2O4 is beneficial to suppression of carbon deposition over the catalyst.  相似文献   

19.
Hydrogenolytic ring opening of methylcyclopentane (MCP) was investigated on Rh/Al2O3 and Rh/SiO2 catalysts, prepared by the incipient wetness method. Strong dependence can be seen in the yield and distribution of ring opening products as a function of temperature and hydrogen pressure. They depended also on the support used. The ring opening reaction required high hydrogen coverage, and was not random (hindered in the vicinity of the methyl group), thus, mainly 2-methylpentane (2MP) and 3-methylpentane (3MP) were formed. The fragments consisted of C1–C5 alkanes, with methane andi-pentane as main fragments. This means the possibility of breaking two C−C bonds during one sojourn of the reactant on the catalyst, both taking place far from the substituent. The loose positive correlation between the ratios ofi-pentane/n-pentane and 3MP/n-hexane seems to support this conclusion. Dedicated to Professor Pál Tétényi on the occasion of his 70th birthday  相似文献   

20.
A series of Au/Fe2O3/Al2O3 catalysts were prepared by the homogeneous deposition-precipitation method. The catalytic activity of the catalyst samples for selective catalytic reduction of NO by propene under oxygen-rich atmosphere was evaluated. The results showed that 2%Au/10%Fe2O3/Al2O3 exhibited good low-temperature activity. The maximum of NO conversion reached 43% at 300 °C, while it was only 21% over the 2%Au/Al2O3 catalyst at the same temperature. The addition of 2% steam to the feed gas had little effect on the catalytic activity. X-ray diffraction results indicated that both Au and Fe2O3 particles were highly dispersed over Al2O3. H2-temperature-programmed reduction results indicated that there was strong interaction between Au and Fe2O3, which made the reduction of Fe2O3 easy. The synergistic effect between Au and Fe2O3 was probably responsible for the good catalytic performance of the Au/Fe2O3/Al2O3 catalyst at low temperature.  相似文献   

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