130 research outputs found

    Preparation and Characterization of Sinter-Resistant RhSm2O3/SiO2 Catalyst and Its Performance for Partial Oxidation of Methane to Syngas

    Get PDF
    以乙酰丙酮铑(Rh(acac)_3)和乙酰丙酮钐(Sm(acac)_3)为前驱体,用浸渍法制备了Rh/SiO_2和Rh-Sm_2O_3/SiO_; 2催化剂。采用原位红外光谱、热重分析、低温N_2吸附、X射线粉末衍射、高分辨透射电子显微镜、H_2-程序升温还原和X射线光电子能谱等实验技术对催; 化剂的制备过程,比表面积和物相以及Rh与Sm_2O_3间的相互作用进行了表征,并以甲烷部分氧化制合成气为目标反应对催化剂的稳定性进行了考察。研究; 表明:以Rh(acac)_3和Sm(acac)_3为前驱体采用简单的浸渍法即可制备出Rh平均粒径为2.3; nm且具有良好抗烧结性能的Rh-Sm_2O_3/SiO_2催化剂。在浸渍过程中乙酰丙酮化合物通过与SiO_2表面羟基形成氢键而负载于载体表面。S; m(acac)_3在SiO_2表面的单层负载量(质量分数)约为31%,对应于Sm_2O_3的质量分数约为15%,只要Sm(acac)_3的质量分; 数低于这一阈值,均可保证分解后生成的Sm_2O_3以高分散形式负载于SiO_2上,且不会因高温(800; °C)焙烧而团聚。高分散于SiO_2表面的Sm_2O_3与Rh之间存在强的相互作用,可显著提高Rh的分散度,防止其在高温反应条件下烧结,进而使低; Rh负载量的催化剂表现出良好的甲烷部分氧化制合成气反应活性和稳定性。Rh/SiO2 and Rh-Sm2O3/SiO2 catalysts were synthesized by the conventional impregnation method using rhodium acetylacetonate (Rh(acac)(3)) and samarium acetylacetonate (Sm(acac)(3)) as precursors. The preparation and catalytic properties, as well as the interaction between Rh and Sm2O3, were characterized in detail by in situ infrared spectroscopy (IR), thermogravimetric analysis (TG), N-2 physisorption (Brunauer-Emmett-Teller (BET) method), X-ray powder diffraction (XRD), transmission electron microscopy (TEM), temperature-programmed reduction (H-2-TPR) and X-ray photoelectron spectroscopy (XPS). The performance of the catalysts for the partial oxidation of methane (POM) to syngas was also investigated. The results showed that a sinter-resistant Rh-Sm2O3/SiO2 catalyst with an average Rh particle size of similar to 2.3 nm could be synthesized using the conventional impregnation method with Rh(acac)(3) and Sm(acac)(3) as precursors. The surface silanol groups of SiO2 acted as the centers to interact with M(acac)(3) (M=Rh, Sm) molecules when SiO2 was impregnated in the M(acac)(3) solution, leading to the formation of a hydrogen-bonded M(acac)(3) layer on the SiO2 surface. In this experiment, the monolayer coverage of Sm(acac)(3) on the SiO2 surface was equal to a Sm(acac)(3) loading (mass fraction) of approximately 31%, which in turn corresponded to a Sm2O3 loading of approximately 15%. When a Sm(acac)(3)/SiO2 sample with Sm(acac)(3) loading below 31% was heated in air to approximately 360?, the monolayer Sm(acac)(3) species decomposed into highly dispersed Sm2O3 species on the SiO2 surface, which displayed superior stability against sintering at high temperature. No aggregation of the Sm2O3 species was observed even when the sample was heated to 800 degrees C in air. The strong interaction between the highly dispersed Sm2O3 and Rh plays a key role in increasing the dispersion of Rh species in the catalyst and preventing the Rh species from sintering under high temperature conditions. This factor should also be responsible for the superior activity and stability of the Rh-Sm2O3/SiO2 catalyst with extremely low Rh loading for the catalytic partial oxidation of methane to syngas.国家重点基础研究发展规划项目(2013CB933102),国家自然科学基金(21473144,21373168),国家基础科学人才培养基金项目(J1310024)及教育部创新研究团队项目(IRT_14R31)资

    高显色指数LED光谱配比与色度参数的关系

    Get PDF
    为了提高LED光源的显色性一般需要改变不同的荧光粉成分,理论上利用不同峰值的荧光粉配比可以实现类似的色温和显色指数。我们采用典型的蓝光LED、3种不同峰值波长的绿色/黄绿色荧光材料与典型红色荧光材料进行5种基本光谱的组合,对每种组合的色度学参数包括色坐标、相关色温、显色指数等进行了仿真计算,并对相近色温下的技术方案和显色性的关系进行了统计和分析。结果表明,在这一技术方案下色温和显色指数在可以较好地确定白光LED光谱的整体形态,同时更高的显色指数可以更好地约束所能采用的配比。国家重点研发计划(批准号:2017YFB0403705

    丙烷选择氧化制丙烯醛MoVTeO/SiO_2催化剂结构与性能研究

    Get PDF
    考察了MoVTeO/SiO2 系列催化剂对丙烷选择氧化制丙烯醛反应的催化性能 ,结合XRD ,Raman和TPD等表征结果研究了催化剂结构、表面性质与催化性能之间的关系 .结果表明 ,以Mo为主要活性组分的催化剂 (MoV0 .2 Te0 .1/SiO2 )具有较好的催化性能 .在V ,Te组分存在下 ,Mo物种的分散度和MoO3 的可还原性能提高 .以表面钼酸盐和多钼酸盐类形态存在的高分散Mo物种有助于提高催化活性 ,而催化剂较弱的表面酸性对丙烯醛的生成有利

    MoVTeO/SiO_2催化剂上丙烷选择氧化制丙烯醛

    Get PDF
    用浸渍法制备了一系列不同组成的MoVTeO/SiO2催化剂,并用XRD、TPR和催化剂性能评价等方法考察了催化剂的物相结构、氧化还原性质及其对丙烷选择氧化制丙烯醛反应的催化性能.结果表明,由于组份之间的相互作用,MoO3的分散度提高,还原温度降低,且其某些晶面可能部分重构或被其它组份覆盖,因而有利于催化活性的提高和丙烯醛的生成.在考察的不同催化剂组成中,(Mo+V+Te)/Si原子比为6%的MoV0.2Te0.1/SiO2催化剂具有最佳的反应性能.反应条件对催化剂性能的影响说明,在丙烷选择氧化制丙烯醛反应中,丙烯为反应的中间物种
    corecore