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A compact and high throughput reactor of monolithic-structured catalyst bed for conversion of syngas to liquid fuels

机译:整体结构催化剂床的紧凑型高通量反应器,用于将合成气转化为液体燃料

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摘要

Syngas conversion is needed for the production of liquid fuels and/or chemicals from renewable or remote feedstock at capacities much smaller than the conventional Fischer–Tropsch (F–T) plant. Here, we present a multiscale-engineered, modular-type design approach toward the development of a compact reactor unit to make syngas-to-liquids economically feasible at small scales. The fundamental design idea is tested by using a Re-Co/alumina catalyst coated on a monolith support of channel size about 0.9 mm. One-pass CO conversion (92–98%) with <10% of CH4 selectivity is obtained with the structured bed under typical F–T reaction conditions. The gas superficial linear velocity was found as one critical parameter that may allow scale-up of the hydrodynamics from the small-scale laboratory tests directly to practical sizes of the reactor with the proposed design strategy. A pore wetness and surface perspiration model is proposed to explain the experimental data and rationalize the new design concepts. ? 2011 American Institute of Chemical Engineers AIChE J, 2012
机译:从可再生或偏远原料生产液体燃料和/或化学品所需的合成气转化能力要远远小于传统的费托(FT)工厂。在这里,我们提出了一种紧凑型反应器单元开发的多尺度工程化,模块化类型的设计方法,以使小规模的合成气制油经济可行。基本设计思想通过使用涂覆在通道尺寸约为0.9毫米的整体载体上的Re-Co /氧化铝催化剂进行测试。在典型的F–T反应条件下,通过结构化床获得CH 4 选择性<10%的单程CO转化率(92–98%)。发现气体表观线速度是一个关键参数,可以通过拟议的设计策略从小型实验室测试直接将水动力放大到实际反应堆尺寸。提出了孔隙湿度和表面汗液模型来解释实验数据并合理化新的设计概念。 ? 2011美国化学工程师学会AIChE J,2012

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