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Revisiting the hydrogenation of sunflower oil over a Ni catalyst

机译:在Ni催化剂上重新研究葵花籽油的氢化反应

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In the present paper the performance of commercial Ni catalyst in edible oil hydrogenation is evaluated under different operating conditions. Particularly, the influence of mass transport resistance on the trans-isomers selectivity is analyzed. Initially a series of experiments aim to analyze the effect of four process variables (reaction temperature, hydrogen bubbling device, agitation rate and stirrer design) on catalyst activity and selectivity to trans-isomeis. These experiments are conducted in diffusional regimes. A simpler set of experiments is carried out operating under conditions that allow the authors to neglect some diffusional resistances although those associated to the catalyst are still present. In the first case activity and selectivity appear to be independent of the hydrogen bubbling system and the catalyst loading. The whole set of data analyzed in terms of the C18:1/C18:2_0 ratio as a function of the C18:2/C18:2_0 ratio shows that the former, a sort of selectivity, depends on the agitation regime. The formation of trans-isomers however, appears to be a function of the reaction extent only.
机译:在本文中,在不同的操作条件下评估了商用Ni催化剂在食用油加氢中的性能。特别地,分析了传质阻力对反式异构体选择性的影响。最初,一系列实验旨在分析四个工艺变量(反应温度,鼓泡装置,搅拌速率和搅拌器设计)对催化剂活性和对反异构体选择性的影响。这些实验是在扩散状态下进行的。在允许作者忽略一些扩散阻力的条件下进行了一组较简单的实验,尽管与催化剂相关的那些仍然存在。在第一种情况下,活性和选择性似乎与氢鼓泡系统和催化剂负载量无关。根据C18:1 / C18:2_0比率作为C18:2 / C18:2_0比率的函数进行分析的整套数据表明,前者(一种选择性)取决于搅拌方式。然而,反式异构体的形成似乎仅是反应程度的函数。

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