甲烷化反应

  • 网络Methanation Reaction
甲烷化反应甲烷化反应
  1. 甲烷化反应中硫化的钼催化剂的透射电镜研究

    A TEM study of sulfided molybdenum catalysts during methanation reaction

  2. 甲烷化反应体系研究综述

    Review of Mechanism Study on Methanation Reaction System

  3. CO的吸附和歧化反应及其在变换-甲烷化反应中的作用

    The role of chemisorption and disproportionation of CO in shift - methanation reaction

  4. Pd/Al2O3催化剂表面上甲烷化反应动力学的统计力学研究Ⅰ甲烷化反应动力学参数的统计力学计算

    Statistical Mechanics Study of Methanation Over Pd / Al_2O_3 Catalyst I. Statistical Mechanics Calculation of the Kinetic Parameters of Methanation

  5. 本文使用TPD和TPR方法对CO在载体镍催化剂上的吸附和脱附性质,以及进行甲烷化反应进行了研究。

    This paper , by TPD and TPR methods , studies the absorption and desorption behavior of carbon and its methanation mechanism on 0801 Ni catalyst .

  6. 采用浸渍法和并流共沉淀法制备含Ni量不同的Ni/ZrO2催化剂,研究了它们在二氧化碳甲烷化反应中的催化性能。

    The catalysts Ni / ZrO 2 were prepared by impregnation and coprecipitation method . The catalytic methanation of carbon dioxide was performed in a fixed-bed reactor to test the behavior of Ni / ZrO 2 catalyst during the reaction .

  7. 镍基催化剂上变换&甲烷化反应机理的研究

    Studies of the mechanism of SHIFT-METHANATION reaction on a nickel catalyst

  8. 甲烷化反应器进料加热器断裂原因分析

    Reason analysis on the feeding heater fracture of methanation reactor

  9. 甲烷化反应机理的蒙特卡罗模拟

    Monte Carlo simulation of methanation mechanism

  10. 水煤气变换反应和甲烷化反应均未达到平衡;

    Both the water gas shift reaction and the methanation reaction do not reach the thermodynamic equilibrium .

  11. 在本文中,我们将辉光放电等离子体用于处理二氧化硅负载的镍催化剂,并将其用于甲烷化反应。

    In present work , glow discharge plasma was used to modify the nickel supported by silica . The catalyst was used in methanation reaction .

  12. 担载型含稀土三组份体系在二氧化碳甲烷化反应中的催化性能本文还研究了三组份体系,也证实了协同效应的存在。

    Catalytic Activity of Supported Three-Componental ⅷ Group Catalyst with Rare Earth for the Methanation of Carbon Dioxide The synergism of viscosity in tricomponent systems has also been researched .

  13. 此外,增加空速有利于甲烷化反应,抑制了水气转化反应,对液态烃类产率影响不大。

    It is also found that increasing the space velocity favor methanation reaction , inhibit water gas conversion reaction . There was not obviously effect on space-time yield of liquid hydrocarbons .

  14. 瞬变应答法研究CO2甲烷化的反应过程机理

    Mechanism of Carbon Dioxide Methanation over Ni Catalyst Revealed by Transient Response Method

  15. Pd/SiO2催化剂上甲烷直接羰基化反应

    Studies of Direct Carbonylation of Methane on Pd / SiO 2 Catalysts

  16. 方法以溴乙烷替代碘甲烷进行烷基化反应。

    METHODS By this method , iodomethane was replaced with bromoethane .

  17. 稀土金属在甲烷芳构化反应催化剂中的应用

    Application of Rare-earth Elements as Promoters in the Catalysts for Methane Aromatization Reactions

  18. Co助剂对甲烷脱氢芳构化反应中Mo/MCM-22催化剂积碳行为的影响

    Effect of Co Additive on the Formation of Carbon Deposit on Mo / MCM-22 Catalyst for Methane Dehydro-aromatization

  19. 甲烷直接芳构化反应的研究Ⅰ.负载Mo基催化剂在无氧条件下的催化性能

    STUDY ON DIRECT AROMATIZATION REACTION OF METHANE ⅰ . The Reaction Performance of Supported Mo Catalysts under Oxygen Free Conditions

  20. 在天然气直接催化转化的研究中,甲烷无氧芳构化反应是一种有效路径,简称MDA反应。

    In the research of the directly catalytic transformation of methane , methane dehydro-aromatization ( MDA ) is a very important way .

  21. MCM-49分子筛在甲烷无氧芳构化反应中的应用

    Methane Aromatization Over MCM-49 Zeolites

  22. 水煤气甲烷化多段绝热反应平衡模型的计算机求解

    Numerical Solution of Equilibrium Model for Gas Methanation in Multistage Adiabatic Reactor

  23. 用共振增强双光子电离法实时研究甲烷无氧芳构化反应的诱导期

    Real-Time Study of Induction Period of Methane Aromatization by Resonance-Enhanced Two-Photon Ionization

  24. 载体硅烷化改性对W/MCM-22催化剂上甲烷脱氢芳构化反应性能的影响

    Effect of Silanization on Catalytic Performance of W / MCM-22 for Dehydro-aromatization of Methane

  25. 甲烷无氧芳构化反应的研究对能源利用、催化科学均具有重大意义。

    Non-oxidative aromatization of methane is significant in the fields of energy utilization and catalysis science .

  26. 程序升温表面反应法研究工业甲烷化镍催化剂的反应定态吸附态

    Investigation of adsorbed states on a nickel catalyst in the methanation of carbon monoxide by temperature-programmed surface reaction ( tpsr ) method

  27. 通过对氨厂合成气制造系统进行过程模拟,得到了采用不同水碳比条件下一段炉至甲烷化炉各个设备反应的定量结果。

    Process simulation of the synthesis gas generation system in an ammonia plant is carried out and quantitative results are obtained using different ratios of water to carbon for the reactions in the systems from the primary reformer to the methanator .