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Accelerated deactivation studies of hydrotreating catalysts in pilot unit

机译:试点单元中加氢处理催化剂的加速失活研究

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In the present paper, a methodology of accelerated deactivation was employed to study the activity loss by coke deposition in short time duration experiments. The loss of activity as function of time is an inherent problem in hydrotreating (HDT) processes. Deactivation at normal operation conditions occurs slowly because of coke formation, commercial catalysts take on average 2-3 years to be replaced. Thus, the accelerated deactivation appears as an instrument capable of providing relevant information on the deactivation phenomenon in reduced time tests. A pilot plant with diesel as feedstock was used under similar conditions to those of industrial units with commercial HDT catalysts. Reaction kinetics was applied to evaluate the deactivation by coke deposition instead of the traditional characterization of residual catalysts. Normalized reaction temperature was related to the initial and residual activities for hydrodesulfurization (HDS), hydrodenitrogenation (HDN) and hydrodearomatization (HDA) reactions. The reaction temperature of 420 degrees C in the accelerated deactivation step provided a satisfactory level of deactivation. The catalyst bed configuration proved to be a key factor in order to preserve the residual activity. HDN and HDA activities were more affected than HDS activity by coke deposition in the experimental runs. HDA reaction could reach the thermodynamic equilibrium state when using less severe operating conditions. Finally, the employed methodology led to a proper representation of the industrial HDT deactivation phenomenon.
机译:在本文中,采用加速失活的方法,以在短时间持续时间实验中通过焦沉积研究活性损失。作为时间函数的活动丧失是加氢处理(HDT)过程中的固有问题。在正常运行条件下停用由于焦炭形成而缓慢地发生,商业催化剂平均持续2-3岁。因此,加速的停用表现为能够在减少时间测试中提供有关停用现象的相关信息的仪器。用柴油作为原料的试验厂在类似条件下使用与商业HDT催化剂的工业单位相似。应用反应动力学来评价焦炭沉积的失活,而不是残留催化剂的传统表征。标准化的反应温度与加氢脱硫(HDS),氢化氢化(HDN)和氢化性反应(HDA)反应的初始和残留活性有关。加速失活步骤中420℃的反应温度提供了令人满意的失活水平。催化剂床配置被证明是为了保留残留活性的关键因素。在实验运行中,HDN和HDA活动比HDS沉积更受HDS活动。在使用较小的操作条件下,HDA反应可以达到热力学平衡状态。最后,采用的方法导致了工业HDT失活现象的适当代表。

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