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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >A novel slurry bubble column membrane reactor concept for Fischer-Tropsch synthesis in GTL technology
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A novel slurry bubble column membrane reactor concept for Fischer-Tropsch synthesis in GTL technology

机译:GTL技术中费-托合成的新型浆料鼓泡塔膜反应器概念

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Fischer-Tropsch synthesis (FTS) plays an important role in the production of ultra-clean transportation fuels, chemicals, and other hydrocarbon products. In this work, a novel combination of fixed-bed and slurry bubble column membrane reactor for Fischer-Tropsch synthesis has been proposed. In the first catalyst bed, the synthesis gas is partially converted to hydrocarbons in a water-cooled reactor which is fixed bed. In the second bed which is a membrane assisted slurry bubble column reactor, the heat of reaction is used to preheat the feed synthesis gas to the first reactor. Due to the decrease of H2/CO to values far from optimum reactants ratio, the membrane concept is suggested to control hydrogen addition. A one-dimensional packed-bed model has been used for modeling of fixed-bed reactor. Also a one-dimensional model with plug flow pattern for gas phase and an axial dispersion pattern for liquid-solid suspension have been developed for modeling of slurry bubble column reactor. Proficiency of a membrane FTS reactor (MR) and a conventional FTS reactor (CR) at identical process conditions has been used as a basis for comparison in terms of temperature, gasoline yield, H2 and CO conversion as well as selectivity. Results show a favorable temperature profile along the proposed concept, an enhancement in the gasoline yield and, thus a main decrease in undesirable product formation. The results suggest that utilizing this type of reactor could be feasible and beneficial. Experimental proof of concept is needed to establish the validity and safe operation of the proposed reactor.
机译:费托合成(FTS)在生产超清洁运输燃料,化学品和其他碳氢化合物产品中发挥重要作用。在这项工作中,提出了用于费-托合成的固定床和淤浆鼓泡塔膜反应器的新型组合。在第一催化剂床中,合成气在固定床的水冷反应器中部分转化为烃。在作为膜辅助浆料鼓泡塔反应器的第二床中,反应热用于预热进入第一反应器的进料合成气。由于H2 / CO降低到远离最佳反应物比率的值,建议使用膜概念来控制氢的添加。一维填充床模型已经用于固定床反应器的建模。还开发了一维模型,该模型具有用于气相的活塞流模式和用于液-固悬浮液的轴向分散模式,以用于浆液鼓泡塔反应器的建模。膜FTS反应器(MR)和常规FTS反应器(CR)在相同工艺条件下的熟练程度已被用作进行温度,汽油收率,H2和CO转化率以及选择性方面比较的基础。结果表明,沿着提出的概念,温度分布良好,汽油收率提高,从而减少了不良产品的形成。结果表明利用这种类型的反应器可能是可行和有益的。需要实验的概念证明来确定拟议反应堆的有效性和安全运行。

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