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Application of Thermal Analysis for Regeneration of Reforming Catalyst

机译:热分析在重整催化剂再生中的应用

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Catalytic reforming of naphtha for improving its characteristics is one of the most important petroleum refining catalytic processes. Modern catalytic reformers utilize dual function platinum-based catalysts which during operation are exposed to the formation of carbonaceous deposits causing gradual deterioration of their activity and alteration of their selectivity. In-situ regeneration has proved to be adequate practice in restoring a catalyst's activity as well as its selectivity. Hence, optimization of regeneration is a vital step of the reforming process. This is usually done under conditions of a general nature that have been recommended by catalyst manufacturers and/or suppliers. Results of thorough laboratory investigations on the thermal behavior of used reforming catalyst (spent samples) revealed that the amount and complexity of the chemical nature of carbonaceous deposits on reforming catalysts are directly related to its life on stream and severity of operating conditions. Optimal regeneration of the catalyst requires specific conditions that take into consideration behavior and combustibility of carbonaceous deposits on its surface. Such information can easily be obtained by applying thermal analysis on catalyst samples which can be taken from the reformer during the production cycle. The paper discusses this topic and presents results of detailed thermal analysis carried out on series of reforming catalyst samples taken from semi-regenerative reformers for two different commercial catalysts.
机译:催化重整石脑油以改善其特性是最重要的石油精炼催化方法之一。现代的催化重整器使用双功能的铂基催化剂,该催化剂在操作过程中暴露于碳质沉积物的形成,从而导致其活性逐渐降低和选择性改变。在恢复催化剂的活性及其选择性方面,原位再生已被证明是适当的实践。因此,再生的优化是重整过程的关键步骤。这通常在催化剂制造商和/或供应商推荐的一般条件下进行。对使用过的重整催化剂(用过的样品)的热行为进行彻底的实验室研究的结果表明,重整催化剂上碳质沉积物化学性质的数量和复杂性与其在流中的寿命和操作条件的严重性直接相关。催化剂的最佳再生需要考虑到其表面上的碳质沉积物的行为和可燃性的特定条件。通过对催化剂样品进行热分析,可以很容易地获得此类信息,这些样品可以在生产周期内从重整器中获取。本文讨论了这一主题,并给出了对一系列重整催化剂样品进行的详细热分析结果,这些样品取自半再生重整器,针对两种不同的商用催化剂。

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