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91.
以金属钇和异丙醇为原料,以HgCl2/I2为复合催化剂,通过对金属钇的机械加工以增加其比表面,并将异丙醇脱水使其含水量降低至0.05%,体系在82℃回流5h,经过滤、减压蒸馏,得到了白色海绵状异丙醇钇,其产率高达83%,合成时间比文献报道的缩短了19h,产率提高了8%。文章确定了催化剂的最佳用量为20gY加入60mg HgCl2/I2,研究了合成产率与HgCl2/I2催化剂和HgCl2催化剂的依赖关系及异丙醇中含水量对合成产率的影响,并对HgCl2/I2的催化作用机理进行了初步探讨。 相似文献
92.
实验研究了装有Pt覆盖的多孔陶瓷的Swiss-Roll燃烧器的燃烧特性,分别得到了3种不同长度的催化剂基底的熄火极限,并测量3种情况下催化剂壁面及催化剂后部空间的温度。实验结果表明,3种情况中,催化剂基底长4.5mm的燃烧器可燃范围最大,所以此长度较适合此Swiss-Roll燃烧器。从温度数据可以看出来,催化剂后部空间存在反应,且受上游催化剂表面反应强度的影响。 相似文献
93.
采用共浸渍法和分步浸渍法在氧化铝载体上通过调节金属元素的负载量和负载顺序制备了多种催化剂,测试了其在NH3作为还原剂条件下的低温催化脱硝活性,研究各种活性组分在脱硝过程中的作用,考察浸渍顺序对脱硝性能的影响。在(?)(NO)=500×10~(-6),n(NH_3):n(NO)=1:1和(?)(O_2)=3.6%的条件下进行试验,结果表明,Mn在脱硝反应中是主要的活性组分,而Fe和Zr是助催化组分;浸渍顺序对催化剂脱硝活性有一定影响;当Fe负载量达到10%时,制备的催化剂5Zr-5Mn-10Fe/Al_2O_3脱硝活性最佳。 相似文献
94.
95.
J. Hafiz R. Mukherjee X. Wang M. Cullinan J.V.R. Heberlein P.H. McMurry S.L. Girshick 《Journal of nanoparticle research》2006,8(6):995-1002
The synthesis of silicon nanowires that are densely coated with silicon nanoparticles is reported. These structures were produced in a two-step process, using a method known as hypersonic plasma particle deposition. In the first step, a Ti–Si nanoparticle film was deposited. In the second step the Ti-source was switched off, and nanoparticle-coated nanowires grew under the simultaneous action of Si vapor deposition and bombardment by Si nanoparticles. Total process time, including both steps, equaled 5 min, and resulted in formation of a dense network of randomly oriented nanowires covering1.5 cm2 of substrate area. The nanowires are composed of single-crystal Si. The diameters of the nanowires vary over the range
100–800 nm. Each nanowire has a crystalline TiSi2 catalyst particle, believed to have been solid during nanowire growth, at its tip. 相似文献
96.
介绍了在燃料电池关键材料与电催化方面的一些研究进展,特别是理论计算与实验研究相结合对燃料电池催化剂构效关系和聚合物电解质的研究.主要内容包括1 nm Pt颗粒的构效关系;Pd催化活性的电子调控与形貌剪裁;以及使用非贵金属催化剂的碱性聚合物电解质燃料电池研究等. 相似文献
97.
采用溶胶凝胶法与等体积浸渍相结合制备了一系列以粘土为载体的K-Co-Mo催化剂. 采用XRD、N2等温吸脱附、H26+的还原,但对Mo4+和Co2+的还原没有明显的影响. 催化剂经还原后,在其表面生成了一种更低价态的Moδ+(1<δ<4)物种,被认为是合成醇的活性中心. 与非负载催化剂相比,粘土担载的K-Co-Mo具有更高的合成醇性能. 负载型催化剂具有较高的活性物种分散度,并且其介孔结构在一定程度上延长了合成醇反应中间体的滞留时间,从而促进了低碳醇的生成. 经773 K还原的催化剂具有较高的活性,其原因可为催化剂表面具有较高含量的Moδ+物种. 相似文献
98.
《Ultrasonics sonochemistry》2014,21(5):1752-1762
The aim of this study is to investigate modified TiO2 doped with C4H4O6HK as heterogeneous solid base catalyst for transesterification of non-edible, Silybum marianum oil to biodiesel using methanol under ultrasonication. Upon screening the catalytic performance of modified TiO2 doped with different K-compounds, 0.7 C4H4O6HK doped on TiO2 was selected. The preparation of the catalyst was done using incipient wetness impregnation method. Having doped modified TiO2 with C4H4O6HK, followed by impregnation, drying and calcination at 600 °C for 6 h, the catalyst was characterized by XRD, FTIR, SEM, BET, TGA, UV and the Hammett indicators. The yield of the biodiesel was proportional to the catalyst basicity. The catalyst had granular and porous structures with high basicity and superior performance. Combined conditions of 16:1 molar ratio of methanol to oil, 5 wt.% catalyst amount, 60 °C reaction temperature and 30 min reaction time was enough for maximum yield of 90.1%. The catalyst maintained sustained activity after five cycles of use. The oxidative stability which was the main problem of the biodiesel was improved from 2.0 h to 3.2 h after 30 days using ascorbic acid as antioxidant. The other properties including the flash point, cetane number and the cold flow ones were however, comparable to international standards. The study indicated that Ti-0.7-600-6 is an efficient, economical and environmentally, friendly catalyst under ultrasonication for producing biodiesel from S. marianum oil with a substantial yield. 相似文献
99.
Viktor S. Burakov Andrey V. Butsen Volker Brüser Falk Harnisch Pulat Y. Misakov Elena A. Nevar Miriam Rosenbaum Natalie A. Savastenko Nikolai V. Tarasenko 《Journal of nanoparticle research》2008,10(5):881-886
Tungsten carbide nanopowder was prepared via pulsed discharge of bulk tungsten and graphite rods immersed in pure ethanol.
The effect of discharge parameters on the characteristics of final products was investigated. Structural and morphological
characterization of nanopowder was performed by means of X-ray diffraction analysis and transmission electron microscopy.
In order to determine the feasibility of using synthesized material as an electrocatalyst, tungsten carbide nanopowder was
tested for hydrogen evolution. A correlation was found between morphology of nanoparticles, their phase composition and electrocatalytic
activity. 相似文献
100.
Parallel combinatorial synthesis in solution using immobilized reagents, catalysts, and scavengers has emerged as a powerful technique for the preparation of diverse libraries of compounds. This technique has only recently been applied to the synthesis of large-ring compounds. In this comprehensive review several strategies are presented and discussed, including Pd-catalyzed allylic alkylation, Stille-coupling, macrolactonization and macrolactamization using solid supported reagents and catalysts. In several cases site isolation has allowed operation of these macrocyclization reactions in concentrated solution (pseudo-dilution effect). 相似文献