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101.
Ceria-supported copper-palladium catalysts have been tested in the hydrogenation of 1,3-butadiene. The SMSI behavior of the bimetallic catalysts depended on the temperature of reduction. They were analyzed by H2 chemisorption and XPS. 相似文献
102.
ChongWang LongyaXu QingxiaWang 《天然气化学杂志》2003,12(1):10-16
Directly making light olefins via CO hydrogenation is a promising process to obtain a nonpetroleum based supply of alkenes.Limited by the ASF distribution function of Fischer-Tropsch synthesis,the yield of light olefins (C2-C4) can not reach the desired levels,which is a great challenge to overcome.Beginning thermodynamic analysis,the ASF distribution function,the reaction performance of CO hydrogenation and slurry reactor studies.The problems currently faced by this research area are presented at the end of the article. 相似文献
103.
Qi Dong 《European Polymer Journal》2007,43(8):3442-3451
Using triethylaluminum (TEA), triisobutylaluminum (TIBA) or TEA/TIBA mixtures of molar ratio 75/25, 50/50 and 25/75 as the cocatalyst, five different ethylene-propylene copolymer samples were synthesized by a MgCl2/SiO2/TiCl4/diester type Ziegler-Natta catalyst in a slurry polymerization process. The synthesized copolymers are strongly heterogeneous in chain structure and were fractionated into part of nearly random copolymer and part of segmented copolymer. Both polymerization activity and copolymer structure were found to be markedly changed when the cocatalyst was changed from TEA to TEA/TIBA mixtures or pure TIBA. As the content of TEA in cocatalyst increases, yield of the random part of product increases and the yield of the crystalline segmented copolymer part decreases. There is also a decrease in ethylene content of the whole product with increasing TEA amount. Copolymerization behaviors of the TEA/TIBA mixture activated catalysis systems are not simple superposition of those activated by pure TEA and TIBA. When a 50/50 TEA/TIBA mixture was used as cocatalyst, the copolymerization activity became the highest, and yields of both the random copolymer part and the segmented copolymer part are close to the highest level. On the other hand, both parts of the copolymer produced with a 50/50 TEA/TIBA mixture are relatively more blocky than the products of TEA or TIBA systems, and difference in ethylene content between the random part and the segmented part was the smallest. The segmented copolymer part of three typical samples was further fractionated by temperature-gradient extraction fractionation into fractions of different ethylene content and sequence distribution. Changing TEA content in the cocatalyst exerted strong influences also on the fraction distribution of the segmented part of copolymer. 相似文献
104.
原位漫反射红外光谱研究氮氧化物在Ag-ZSM-5催化剂上的吸附态及选择性催化还原反应机理 总被引:3,自引:0,他引:3
利用原位分析方法对催化剂表面吸附态进行动态表征,对了解催化反应机理具有重要的意义。漫反射红外光谱是一种理想的原位方法,应用该方法在298-773K范围原位考察了以丙烯为还原剂,NO在Ag-ZSM-5催化剂上的吸附态及选择性催化还原过程。认为NO的选择性催化还原符合直接作用机理,还原的关键是形成有机-氮氧化物(R-NO2或R-ONO)中间体。O2的作用是使C3H6充分活化,并是有效产生有机-氮氧化物不可缺少的条件。 相似文献
105.
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107.
The study on coordination copolymerization of styrene (S) with maleic anhydride (MA) by rare-earth coordination catalysts, NdL_3-Al(i-Bu)_3, has been successfully carried out for the first time. Some features, kinetic behavior, and mechanism of the SMA copolymerization by Nd(naph)_3-Al(i-Bu)_3 system are described and discussed. The copolymex of styrenemaleic anhydride prepared by the NdL_3-Al(i-Bu)_3 systems in benzene at 50℃ is an alternating-rich white powder having high number-average molecular weight of 6—8.5×10~5. The overall activation energy for the polymerization was found to be 10.5KJ/mol. The polymerization was not suppressed by addition of hydroquinone. The catalytic activity of various ligands in NdL_3 for the copolymerization decreases in the following order: Nd (naph)_3>Nd-(P_(507))_3~NdCl_3-6H_2O>Nd(P_(204))_3>Nd(acac)_3. 3H_2O. The experimental results are explained based on a mechanism to be the coordination-type copolymerization in terms of the participation of a monomer-monomer c 相似文献
108.
氧化铈和氧化镧在汽车尾气净化催化剂中的应用 总被引:13,自引:7,他引:13
阐述了稀土元素应用于汽车尾气净化催化剂的意义,讨论了氧化铈和氧化镧的催化作用机制及其影响因素,并对其发展前景进行了展望。汽车尾气净化普遍使用铂铑基贵金属三元催化剂。为了解决Pt,Rh的供需矛盾,应用稀土(氧化铈和氧化镧)作为添加剂,降低Pt,Rh用量、扩大Pd基催化剂应用是研究开发的热点。据研究,氧化铈和氧化镧催化作用机制主要是提高活性涂层的催化活性,自动调节空气燃料比和助催化作用,并能提高载体的热稳定性和机械强度等性能。影响氧化铈和氧化镧催化性能的因素主要为共助作用、添加方法、ZrO2,CuO,AgO等其他氧化物的协同作用。 相似文献
109.
110.
Sm修饰的Ni-MgO催化剂制备碳纳米管的研究 总被引:2,自引:0,他引:2
Carbon nanotubes (CNTs) have been synthesized over Ni-MgO and Ni-Sm-MgO catalysts by decomposition of CH4 at 650 ℃. The addition of Sm into Ni-MgO catalyst not only promotes the catalytic activity and lifetime of the catalyst, but also improves the graphitization and heat stability of carbon nanotubes. The yield of CNTs obtained over the Ni-10Sm-MgO catalyst reaches 33 g C·(g Ni)-1, being more than 5 times higher than that of the Ni-MgO catalyst. XRD and TPR results of the catalysts indicate that there is a remarkable interaction of Ni with Sm species, which facilitates the reduction of nickel and restrains the Ni particles from agglomerating. 相似文献