费托合成

  • 网络f-t;Fischer-Tropsch;Fischer-Tropsch Synthesis
费托合成费托合成
  1. 对将泡沫镍作为整体催化剂载体用于费托合成反应的可行性做了初步的探索。

    We did a preliminary exploration on whether the foam nickel as catalyst carrier for F-T synthesis is feasible or not .

  2. 二甲醚是气变油工艺的三种重要合成燃料(费托合成油、二甲醚、甲醇)之一。

    DME is one of the three important synthetic fuels ( F-T oils , methanol and DME ) by the GTL ( gas-to-liquid ) processes .

  3. 而Fe基催化剂具有价廉易得、催化性能较好,因此被广泛用于费托合成研究中,已经在工业化生产中被广泛使用。

    So it is widely used to Fischer-Tropsch synthesis and industrial production .

  4. Al2O3改性Co/SiO2费托合成催化剂的制备及结构表征

    Preparation and configuration of cobalt-based catalyst supported on Al_2O_3 modified SiO_2 for Fischer-Tropsch synthesis

  5. Co/SiO2催化剂催化费托合成中CeO2助剂的作用

    Role of CeO_2 Promoter in Co / SiO_2 Catalyst for Fischer-Tropsch Synthesis

  6. Fe-Mn催化剂的费托合成产物分布动力学

    Kinetics of product distribution of Fischer-Tropsch synthesis on Fe-Mn ultrafine particle catalyst

  7. 甲烷与二氧化碳重整制取低碳氢比(CO/H2比为1)的合成气,为费托合成提供理想的原料。

    The synthesis gas with a low hydrocarbon ration produced by the reforming of methane with carbon dioxide provides an ideal raw material for Fischer-Tropsch synthesis .

  8. 费托合成Co/ZrO2Al2O3催化剂反应性能的研究

    Study on reaction performance of Co / ZrO_2-Al_2O_3 catalysts for Fischer-Tropsch synthesis

  9. 固定床费托合成(FTS)工程模型开发&工程问题与模型化

    On development of engineering models for fixed-bed Fischer-Tropsch synthesis : engineering problem and modelization

  10. 用脉冲D2反应研究CeO2在Co-CeO2/SiO2费托合成催化剂中的促进作用机理

    Studies on Promotion Mechanism of CeO_2 in Co-CeO_2 / SiO_2 Catalyst for Fischer-Tropsch Synthesis Using D_2 Pulse Reaction

  11. ZrO2-SiO2负载钴催化剂上的费托合成反应

    Fischer-Tropsch Synthesis over ZrO_2-SiO_2 Supported Cobalt Catalysts

  12. Co-Fe费托合成催化剂的制备、表征及反应性能研究

    Research of Preparation and Characterization of Cobalt-Iron Based Catalysts for F-T Synthesis and the Reaction Performance

  13. 费托合成技术是一种重要的气变液(GTL)技术,其关键是研发高活性、高选择性、性能稳定、使用寿命长的催化剂。

    Fischer-Tropsch synthesis is one important technology for gas to liquid ( GTL ) . The activity and selectivity of catalyst are key factors in this process .

  14. 工业Fe-Cu-K催化剂上费托合成反应动力学(Ⅰ)&基于机理的动力学模型

    Kinetics of Fischer - Tropsch synthesis over Fe - Cu - K catalyst ( ⅰ ) kinetic model on the basis of mechanism

  15. 费托合成熔铁催化剂对液体产物的影响

    Effect of Fused Iron Catalyst on Liquid Product of F-T Synthesis

  16. 费托合成中Co/ZrO2/SiO2催化剂的失活行为

    Deactivation of Co / ZrO_2 / SiO_2 Catalyst for Fischer-Tropsch Synthesis

  17. Fe-Co/SiO2双金属催化剂上费托合成反应的研究

    Catalytic Performance of Fe-Co / SiO_2 Bimetallic Catalyst in Fischer-Tropsch Synthesis

  18. 改性Fe/MnO催化剂在费托合成中的反应活性变化

    Activity change of FT synthesis over modified fe / mno catalysts

  19. 回收费托合成弛放气中合成原料的研究

    Study on Synthesis Material Recovery of Vent Gas from F-T Synthesis

  20. 浆态相费托合成反应铁基催化剂的磨损研究

    Study on the attrition of iron catalysts in slurry f t synthesis

  21. 费托合成反应机理的研究进展

    Recent advances in the study of Fischer Tropsch reaction mechanism

  22. 基于遗传算法的费托合成反应动力学模型参数优化

    Optimization of parameters of FTS kinetic model by genetic algorithm

  23. 焙烧温度对费托合成铁基催化剂还原动力学的影响

    Effect of Calcination Temperature on the Reduction Kinetics of Iron-Based Fischer-Tropsch Catalyst

  24. 乙醇浸渍对Co/SBA-15费托合成催化剂性能的影响

    Influence of Ethanol Impregnation on Properties of Co / SBA-15 Fischer-Tropsch Catalysts

  25. 浆态床反应器中熔铁催化剂的费托合成反应性能

    Performance of Fused-Iron Catalyst in Fischer-Tropsch Synthesis in Slurry Reactor

  26. 熔铁催化剂对费托合成反应的催化特性研究

    Performance of a Fused-iron Catalyst in Fischer-Tropsch Synthesis

  27. 硅胶来源对费托合成用Co/SiO2催化剂性能的影响

    Influence of Silica Sources on Performance of Co / SiO_2 Catalysts for F-T Synthesis

  28. 浆液外循环过滤分离费托合成浆态床反应器研究开发

    Slurry-bed Reactor Research and Development of External Slurry Circulation Filtering Separation of Fischer-Tropsch Synthesis

  29. 费托合成中气体在液相石蜡中溶解度关联的研究

    Study on solubility correlation of gases and liquid waxes systems in Fischer Tropsch synthesis

  30. 详细讨论了费托合成反应碳化物机理基础上的烯烃再吸附理论。

    The olefin readsorption mechanism based on the carbide mechanism is stressed in depth .