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Variation of residence time with chain length for products in a slurry-phase Fischer-Tropsch reactor

机译:淤浆相费-托反应器中产物的停留时间随链长的变化

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摘要

The phrases "product accumulation" or "accumulated products" or "product holdup" have appeared in literature during the past several decades to qualitatively explain the experimental results for Fischer-Tropsch synthesis (FTS). This study develops an experimental method for a slurry reactor to evaluate the product accumulation inside the FT reactor by measuring the average residence time of products as a function of carbon number. The effect of accumulation of products on vapor-liquid equilibrium (VLE) in the reactor is also investigated. The results show that VLE is reached inside the FT reactor for components up to C _(17). Furthermore, the relationship between the mole fractions of components in the vapor and the liquid phase for lighter hydrocarbons, up to around C _(17), is adequately described by Raoult's law. These results suggests that chain length-dependent solubility in the liquid phase is the predominant cause for chain length dependencies of secondary olefin reactions in FTS, and diffusion-limited removal of products is only significant for products with carbon number greater than 17.
机译:在过去的几十年中,短语“产品积累”或“积累的产品”或“产品滞留率”已出现在文献中,以定性地解释费托合成(FTS)的实验结果。这项研究开发了一种用于淤浆反应器的实验方法,通过测量产物的平均停留时间与碳数的函数来评估产物在FT反应器中的积累。还研究了产物的积聚对反应器中气液平衡(VLE)的影响。结果表明,对于高达C _(17)的组件,在FT反应器内已达到VLE。此外,通过拉乌尔定律充分描述了轻质烃的蒸气和液相中组分的摩尔分数与液相之间的关系,最高可达C _(17)左右。这些结果表明,液相中链长度依赖性的溶解度是FTS中次级烯烃反应链长度依赖性的主要原因,而扩散受限的产物去除仅对碳数大于17的产物有意义。

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